681 results on '"Kuchenbaecker, Karoline"'
Search Results
2. Multi-ancestry genome-wide association study of major depression aids locus discovery, fine mapping, gene prioritization and causal inference
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Meng, Xiangrui, Navoly, Georgina, Giannakopoulou, Olga, Levey, Daniel F., Koller, Dora, Pathak, Gita A., Koen, Nastassja, Lin, Kuang, Adams, Mark J., Rentería, Miguel E., Feng, Yanzhe, Gaziano, J. Michael, Stein, Dan J., Zar, Heather J., Campbell, Megan L., van Heel, David A., Trivedi, Bhavi, Finer, Sarah, McQuillin, Andrew, Bass, Nick, Chundru, V. Kartik, Martin, Hilary C., Huang, Qin Qin, Valkovskaya, Maria, Chu, Chia-Yi, Kanjira, Susan, Kuo, Po-Hsiu, Chen, Hsi-Chung, Tsai, Shih-Jen, Liu, Yu-Li, Kendler, Kenneth S., Peterson, Roseann E., Cai, Na, Fang, Yu, Sen, Srijan, Scott, Laura J., Burmeister, Margit, Loos, Ruth J. F., Preuss, Michael H., Actkins, Ky’Era V., Davis, Lea K., Uddin, Monica, Wani, Agaz H., Wildman, Derek E., Aiello, Allison E., Ursano, Robert J., Kessler, Ronald C., Kanai, Masahiro, Okada, Yukinori, Sakaue, Saori, Rabinowitz, Jill A., Maher, Brion S., Uhl, George, Eaton, William, Cruz-Fuentes, Carlos S., Martinez-Levy, Gabriela A., Campos, Adrian I., Millwood, Iona Y., Chen, Zhengming, Li, Liming, Wassertheil-Smoller, Sylvia, Jiang, Yunxuan, Tian, Chao, Martin, Nicholas G., Mitchell, Brittany L., Byrne, Enda M., Awasthi, Swapnil, Coleman, Jonathan R. I., Ripke, Stephan, Sofer, Tamar, Walters, Robin G., McIntosh, Andrew M., Polimanti, Renato, Dunn, Erin C., Stein, Murray B., Gelernter, Joel, Lewis, Cathryn M., and Kuchenbaecker, Karoline
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- 2024
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3. Genome-wide association studies and cross-population meta-analyses investigating short and long sleep duration
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Austin-Zimmerman, Isabelle, Levey, Daniel F., Giannakopoulou, Olga, Deak, Joseph D., Galimberti, Marco, Adhikari, Keyrun, Zhou, Hang, Denaxas, Spiros, Irizar, Haritz, Kuchenbaecker, Karoline, McQuillin, Andrew, Concato, John, Buysse, Daniel J., Gaziano, J. Michael, Gottlieb, Daniel J., Polimanti, Renato, Stein, Murray B., Bramon, Elvira, and Gelernter, Joel
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- 2023
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4. Mendelian randomisation study of body composition and depression in people of East Asian ancestry highlights potential setting-specific causality
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O’Loughlin, Jessica, Casanova, Francesco, Fairhurst-Hunter, Zammy, Hughes, Amanda, Bowden, Jack, Watkins, Edward R., Freathy, Rachel M., Millwood, Iona Y., Lin, Kuang, Chen, Zhengming, Li, Liming, Lv, Jun, Walters, Robin G., Howe, Laura D., Kuchenbaecker, Karoline, and Tyrrell, Jessica
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- 2023
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5. Aggregation tests identify new gene associations with breast cancer in populations with diverse ancestry
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Mueller, Stefanie H., Lai, Alvina G., Valkovskaya, Maria, Michailidou, Kyriaki, Bolla, Manjeet K., Wang, Qin, Dennis, Joe, Lush, Michael, Abu-Ful, Zomoruda, Ahearn, Thomas U., Andrulis, Irene L., Anton-Culver, Hoda, Antonenkova, Natalia N., Arndt, Volker, Aronson, Kristan J., Augustinsson, Annelie, Baert, Thais, Freeman, Laura E. Beane, Beckmann, Matthias W., Behrens, Sabine, Benitez, Javier, Bermisheva, Marina, Blomqvist, Carl, Bogdanova, Natalia V., Bojesen, Stig E., Bonanni, Bernardo, Brenner, Hermann, Brucker, Sara Y., Buys, Saundra S., Castelao, Jose E., Chan, Tsun L., Chang-Claude, Jenny, Chanock, Stephen J., Choi, Ji-Yeob, Chung, Wendy K., Colonna, Sarah V., Cornelissen, Sten, Couch, Fergus J., Czene, Kamila, Daly, Mary B., Devilee, Peter, Dörk, Thilo, Dossus, Laure, Dwek, Miriam, Eccles, Diana M., Ekici, Arif B., Eliassen, A. Heather, Engel, Christoph, Evans, D. Gareth, Fasching, Peter A., Fletcher, Olivia, Flyger, Henrik, Gago-Dominguez, Manuela, Gao, Yu-Tang, García-Closas, Montserrat, García-Sáenz, José A., Genkinger, Jeanine, Gentry-Maharaj, Aleksandra, Grassmann, Felix, Guénel, Pascal, Gündert, Melanie, Haeberle, Lothar, Hahnen, Eric, Haiman, Christopher A., Håkansson, Niclas, Hall, Per, Harkness, Elaine F., Harrington, Patricia A., Hartikainen, Jaana M., Hartman, Mikael, Hein, Alexander, Ho, Weang-Kee, Hooning, Maartje J., Hoppe, Reiner, Hopper, John L., Houlston, Richard S., Howell, Anthony, Hunter, David J., Huo, Dezheng, Ito, Hidemi, Iwasaki, Motoki, Jakubowska, Anna, Janni, Wolfgang, John, Esther M., Jones, Michael E., Jung, Audrey, Kaaks, Rudolf, Kang, Daehee, Khusnutdinova, Elza K., Kim, Sung-Won, Kitahara, Cari M., Koutros, Stella, Kraft, Peter, Kristensen, Vessela N., Kubelka-Sabit, Katerina, Kurian, Allison W., Kwong, Ava, Lacey, James V., Lambrechts, Diether, Le Marchand, Loic, Li, Jingmei, Linet, Martha, Lo, Wing-Yee, Long, Jirong, Lophatananon, Artitaya, Mannermaa, Arto, Manoochehri, Mehdi, Margolin, Sara, Matsuo, Keitaro, Mavroudis, Dimitrios, Menon, Usha, Muir, Kenneth, Murphy, Rachel A., Nevanlinna, Heli, Newman, William G., Niederacher, Dieter, O’Brien, Katie M., Obi, Nadia, Offit, Kenneth, Olopade, Olufunmilayo I., Olshan, Andrew F., Olsson, Håkan, Park, Sue K., Patel, Alpa V., Patel, Achal, Perou, Charles M., Peto, Julian, Pharoah, Paul D. P., Plaseska-Karanfilska, Dijana, Presneau, Nadege, Rack, Brigitte, Radice, Paolo, Ramachandran, Dhanya, Rashid, Muhammad U., Rennert, Gad, Romero, Atocha, Ruddy, Kathryn J., Ruebner, Matthias, Saloustros, Emmanouil, Sandler, Dale P., Sawyer, Elinor J., Schmidt, Marjanka K., Schmutzler, Rita K., Schneider, Michael O., Scott, Christopher, Shah, Mitul, Sharma, Priyanka, Shen, Chen-Yang, Shu, Xiao-Ou, Simard, Jacques, Surowy, Harald, Tamimi, Rulla M., Tapper, William J., Taylor, Jack A., Teo, Soo Hwang, Teras, Lauren R., Toland, Amanda E., Tollenaar, Rob A. E. M., Torres, Diana, Torres-Mejía, Gabriela, Troester, Melissa A., Truong, Thérèse, Vachon, Celine M., Vijai, Joseph, Weinberg, Clarice R., Wendt, Camilla, Winqvist, Robert, Wolk, Alicja, Wu, Anna H., Yamaji, Taiki, Yang, Xiaohong R., Yu, Jyh-Cherng, Zheng, Wei, Ziogas, Argyrios, Ziv, Elad, Dunning, Alison M., Easton, Douglas F., Hemingway, Harry, Hamann, Ute, and Kuchenbaecker, Karoline B.
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- 2023
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6. Genetic copy number variants, cognition and psychosis: a meta-analysis and a family study
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Thygesen, Johan H, Presman, Amelia, Harju-Seppänen, Jasmine, Irizar, Haritz, Jones, Rebecca, Kuchenbaecker, Karoline, Lin, Kuang, Alizadeh, Behrooz Z, Austin-Zimmerman, Isabelle, Bartels-Velthuis, Agna, Bhat, Anjali, Bruggeman, Richard, Cahn, Wiepke, Calafato, Stella, Crespo-Facorro, Benedicto, de Haan, Liewe, de Zwarte, Sonja MC, Di Forti, Marta, Díez-Revuelta, Álvaro, Hall, Jeremy, Hall, Mei-Hua, Iyegbe, Conrad, Jablensky, Assen, Kahn, Rene, Kalaydjieva, Luba, Kravariti, Eugenia, Lawrie, Stephen, Luykx, Jurjen J, Mata, Igancio, McDonald, Colm, McIntosh, Andrew M, McQuillin, Andrew, Muir, Rebecca, Ophoff, Roel, Picchioni, Marco, Prata, Diana P, Ranlund, Siri, Rujescu, Dan, Rutten, Bart PF, Schulze, Katja, Shaikh, Madiha, Schirmbeck, Frederike, Simons, Claudia JP, Toulopoulou, Timothea, van Amelsvoort, Therese, van Haren, Neeltje, van Os, Jim, van Winkel, Ruud, Vassos, Evangelos, Walshe, Muriel, Weisbrod, Matthias, Zartaloudi, Eirini, Bell, Vaughan, Powell, John, Lewis, Cathryn M, Murray, Robin M, and Bramon, Elvira
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Biological Psychology ,Pharmacology and Pharmaceutical Sciences ,Biomedical and Clinical Sciences ,Psychology ,Human Genome ,Clinical Research ,Brain Disorders ,Serious Mental Illness ,Schizophrenia ,Neurosciences ,Genetics ,Prevention ,Mental Health ,2.1 Biological and endogenous factors ,2.3 Psychological ,social and economic factors ,Aetiology ,Mental health ,Cognition ,DNA Copy Number Variations ,Genetic Predisposition to Disease ,Genome-Wide Association Study ,Humans ,Psychotic Disorders ,Biological Sciences ,Medical and Health Sciences ,Psychology and Cognitive Sciences ,Psychiatry ,Clinical sciences ,Biological psychology ,Clinical and health psychology - Abstract
The burden of large and rare copy number genetic variants (CNVs) as well as certain specific CNVs increase the risk of developing schizophrenia. Several cognitive measures are purported schizophrenia endophenotypes and may represent an intermediate point between genetics and the illness. This paper investigates the influence of CNVs on cognition. We conducted a systematic review and meta-analysis of the literature exploring the effect of CNV burden on general intelligence. We included ten primary studies with a total of 18,847 participants and found no evidence of association. In a new psychosis family study, we investigated the effects of CNVs on specific cognitive abilities. We examined the burden of large and rare CNVs (>200 kb,
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- 2021
7. Abstract 14019: Comparing the Effect Profile of CETP in Individuals of East Asian and European Ancestries
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Dunca, Diana, Choapde, Sandesh, Gordillo-Marañón, Maria, Hingorani, Aaron, Kuchenbaecker, Karoline, Finan, Chris, and Schmidt, Amand Floriaan
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- 2023
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8. Genome-wide Association Studies in Ancestrally Diverse Populations: Opportunities, Methods, Pitfalls, and Recommendations.
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Peterson, Roseann, Kuchenbaecker, Karoline, Walters, Raymond, Chen, Chia-Yen, Popejoy, Alice, Periyasamy, Sathish, Lam, Max, Iyegbe, Conrad, Strawbridge, Rona, Brick, Leslie, Carey, Caitlin, Martin, Alicia, Meyers, Jacquelyn, Su, Jinni, Chen, Junfang, Edwards, Alexis, Kalungi, Allan, Koen, Nastassja, Majara, Lerato, Schwarz, Emanuel, Smoller, Jordan, Stahl, Eli, Sullivan, Patrick, Vassos, Evangelos, Mowry, Bryan, Prieto, Miguel, Cuellar-Barboza, Alfredo, Bigdeli, Tim, Edenberg, Howard, Huang, Hailiang, and Duncan, Laramie
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GWAS ,admixed populations ,ancestry ,complex disease ,cross-ancestry ,diversity ,population genetics ,psychiatry ,trans-ancestry ,trans-ethnic ,Data Accuracy ,Genetic Variation ,Genetics ,Population ,Genome-Wide Association Study ,Genotyping Techniques ,Human Genetics ,Humans ,Pedigree - Abstract
Genome-wide association studies (GWASs) have focused primarily on populations of European descent, but it is essential that diverse populations become better represented. Increasing diversity among study participants will advance our understanding of genetic architecture in all populations and ensure that genetic research is broadly applicable. To facilitate and promote research in multi-ancestry and admixed cohorts, we outline key methodological considerations and highlight opportunities, challenges, solutions, and areas in need of development. Despite the perception that analyzing genetic data from diverse populations is difficult, it is scientifically and ethically imperative, and there is an expanding analytical toolbox to do it well.
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- 2019
9. Publisher Correction: Shared heritability and functional enrichment across six solid cancers.
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Jiang, Xia, Finucane, Hilary K, Schumacher, Fredrick R, Schmit, Stephanie L, Tyrer, Jonathan P, Han, Younghun, Michailidou, Kyriaki, Lesseur, Corina, Kuchenbaecker, Karoline B, Dennis, Joe, Conti, David V, Casey, Graham, Gaudet, Mia M, Huyghe, Jeroen R, Albanes, Demetrius, Aldrich, Melinda C, Andrew, Angeline S, Andrulis, Irene L, Anton-Culver, Hoda, Antoniou, Antonis C, Antonenkova, Natalia N, Arnold, Susanne M, Aronson, Kristan J, Arun, Banu K, Bandera, Elisa V, Barkardottir, Rosa B, Barnes, Daniel R, Batra, Jyotsna, Beckmann, Matthias W, Benitez, Javier, Benlloch, Sara, Berchuck, Andrew, Berndt, Sonja I, Bickeböller, Heike, Bien, Stephanie A, Blomqvist, Carl, Boccia, Stefania, Bogdanova, Natalia V, Bojesen, Stig E, Bolla, Manjeet K, Brauch, Hiltrud, Brenner, Hermann, Brenton, James D, Brook, Mark N, Brunet, Joan, Brunnström, Hans, Buchanan, Daniel D, Burwinkel, Barbara, Butzow, Ralf, Cadoni, Gabriella, Caldés, Trinidad, Caligo, Maria A, Campbell, Ian, Campbell, Peter T, Cancel-Tassin, Géraldine, Cannon-Albright, Lisa, Campa, Daniele, Caporaso, Neil, Carvalho, André L, Chan, Andrew T, Chang-Claude, Jenny, Chanock, Stephen J, Chen, Chu, Christiani, David C, Claes, Kathleen BM, Claessens, Frank, Clements, Judith, Collée, J Margriet, Correa, Marcia Cruz, Couch, Fergus J, Cox, Angela, Cunningham, Julie M, Cybulski, Cezary, Czene, Kamila, Daly, Mary B, deFazio, Anna, Devilee, Peter, Diez, Orland, Gago-Dominguez, Manuela, Donovan, Jenny L, Dörk, Thilo, Duell, Eric J, Dunning, Alison M, Dwek, Miriam, Eccles, Diana M, Edlund, Christopher K, Edwards, Digna R Velez, Ellberg, Carolina, Evans, D Gareth, Fasching, Peter A, Ferris, Robert L, Liloglou, Triantafillos, Figueiredo, Jane C, Fletcher, Olivia, Fortner, Renée T, Fostira, Florentia, Franceschi, Silvia, Friedman, Eitan, Gallinger, Steven J, and Ganz, Patricia A
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MD Multidisciplinary - Abstract
An amendment to this paper has been published and can be accessed via a link at the top of the paper.
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- 2019
10. Shared heritability and functional enrichment across six solid cancers.
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Jiang, Xia, Finucane, Hilary K, Schumacher, Fredrick R, Schmit, Stephanie L, Tyrer, Jonathan P, Han, Younghun, Michailidou, Kyriaki, Lesseur, Corina, Kuchenbaecker, Karoline B, Dennis, Joe, Conti, David V, Casey, Graham, Gaudet, Mia M, Huyghe, Jeroen R, Albanes, Demetrius, Aldrich, Melinda C, Andrew, Angeline S, Andrulis, Irene L, Anton-Culver, Hoda, Antoniou, Antonis C, Antonenkova, Natalia N, Arnold, Susanne M, Aronson, Kristan J, Arun, Banu K, Bandera, Elisa V, Barkardottir, Rosa B, Barnes, Daniel R, Batra, Jyotsna, Beckmann, Matthias W, Benitez, Javier, Benlloch, Sara, Berchuck, Andrew, Berndt, Sonja I, Bickeböller, Heike, Bien, Stephanie A, Blomqvist, Carl, Boccia, Stefania, Bogdanova, Natalia V, Bojesen, Stig E, Bolla, Manjeet K, Brauch, Hiltrud, Brenner, Hermann, Brenton, James D, Brook, Mark N, Brunet, Joan, Brunnström, Hans, Buchanan, Daniel D, Burwinkel, Barbara, Butzow, Ralf, Cadoni, Gabriella, Caldés, Trinidad, Caligo, Maria A, Campbell, Ian, Campbell, Peter T, Cancel-Tassin, Géraldine, Cannon-Albright, Lisa, Campa, Daniele, Caporaso, Neil, Carvalho, André L, Chan, Andrew T, Chang-Claude, Jenny, Chanock, Stephen J, Chen, Chu, Christiani, David C, Claes, Kathleen BM, Claessens, Frank, Clements, Judith, Collée, J Margriet, Correa, Marcia Cruz, Couch, Fergus J, Cox, Angela, Cunningham, Julie M, Cybulski, Cezary, Czene, Kamila, Daly, Mary B, deFazio, Anna, Devilee, Peter, Diez, Orland, Gago-Dominguez, Manuela, Donovan, Jenny L, Dörk, Thilo, Duell, Eric J, Dunning, Alison M, Dwek, Miriam, Eccles, Diana M, Edlund, Christopher K, Edwards, Digna R Velez, Ellberg, Carolina, Evans, D Gareth, Fasching, Peter A, Ferris, Robert L, Liloglou, Triantafillos, Figueiredo, Jane C, Fletcher, Olivia, Fortner, Renée T, Fostira, Florentia, Franceschi, Silvia, Friedman, Eitan, Gallinger, Steven J, and Ganz, Patricia A
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Humans ,Breast Neoplasms ,Colorectal Neoplasms ,Ovarian Neoplasms ,Head and Neck Neoplasms ,Lung Neoplasms ,Prostatic Neoplasms ,Genetic Predisposition to Disease ,Neoplasm Proteins ,Case-Control Studies ,Smoking ,Mental Disorders ,Inheritance Patterns ,Phenotype ,Polymorphism ,Single Nucleotide ,European Continental Ancestry Group ,Female ,Male ,Genome-Wide Association Study ,Polymorphism ,Single Nucleotide ,Prevention ,Cancer ,Breast Cancer ,Genetics ,Rare Diseases ,Lung Cancer ,Human Genome ,Colo-Rectal Cancer ,Digestive Diseases ,Lung ,MD Multidisciplinary - Abstract
Quantifying the genetic correlation between cancers can provide important insights into the mechanisms driving cancer etiology. Using genome-wide association study summary statistics across six cancer types based on a total of 296,215 cases and 301,319 controls of European ancestry, here we estimate the pair-wise genetic correlations between breast, colorectal, head/neck, lung, ovary and prostate cancer, and between cancers and 38 other diseases. We observed statistically significant genetic correlations between lung and head/neck cancer (rg = 0.57, p = 4.6 × 10-8), breast and ovarian cancer (rg = 0.24, p = 7 × 10-5), breast and lung cancer (rg = 0.18, p =1.5 × 10-6) and breast and colorectal cancer (rg = 0.15, p = 1.1 × 10-4). We also found that multiple cancers are genetically correlated with non-cancer traits including smoking, psychiatric diseases and metabolic characteristics. Functional enrichment analysis revealed a significant excess contribution of conserved and regulatory regions to cancer heritability. Our comprehensive analysis of cross-cancer heritability suggests that solid tumors arising across tissues share in part a common germline genetic basis.
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- 2019
11. Transferability of genetic loci and polygenic scores for cardiometabolic traits in British Pakistani and Bangladeshi individuals
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Huang, Qin Qin, Sallah, Neneh, Dunca, Diana, Trivedi, Bhavi, Hunt, Karen A., Hodgson, Sam, Lambert, Samuel A., Arciero, Elena, Wright, John, Griffiths, Chris, Trembath, Richard C., Hemingway, Harry, Inouye, Michael, Finer, Sarah, van Heel, David A., Lumbers, R. Thomas, Martin, Hilary C., and Kuchenbaecker, Karoline
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- 2022
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12. Insights into the genetic architecture of haematological traits from deep phenotyping and whole-genome sequencing for two Mediterranean isolated populations
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Kuchenbaecker, Karoline, Gilly, Arthur, Suveges, Daniel, Southam, Lorraine, Giannakopoulou, Olga, Kilian, Britt, Tsafantakis, Emmanouil, Karaleftheri, Maria, Farmaki, Aliki-Eleni, Gurdasani, Deepti, Kundu, Kousik, Sandhu, Manjinder S., Danesh, John, Butterworth, Adam, Barroso, Inês, Dedoussis, George, and Zeggini, Eleftheria
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- 2022
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13. Polygenic risk scores indicate extreme ages at onset of breast cancer in female BRCA1/2 pathogenic variant carriers
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Borde, Julika, Laitman, Yael, Blümcke, Britta, Niederacher, Dieter, Weber-Lassalle, Konstantin, Sutter, Christian, Rump, Andreas, Arnold, Norbert, Wang-Gohrke, Shan, Horváth, Judit, Gehrig, Andrea, Schmidt, Gunnar, Dutrannoy, Véronique, Ramser, Juliane, Hentschel, Julia, Meindl, Alfons, Schroeder, Christopher, Wappenschmidt, Barbara, Engel, Christoph, Kuchenbaecker, Karoline, Schmutzler, Rita K., Friedman, Eitan, Hahnen, Eric, and Ernst, Corinna
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- 2022
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14. Study protocol of DIVERGE, the first genetic epidemiological study of major depressive disorder in Pakistan
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Valkovskaya, Maria, Hassan, Arsalan, Zartaloudi, Eirini, Hussain, Fahad, Umar, Muhammad, Khizar, Bakht, Khattak, Inzemam, Gill, Shamshad Ahmed, Khan, Shams-Ud-Din Ahmad, Dogar, Imtiaz Ahmad, Mustafa, Ali Burhan, Ansari, Moin Ahmed, Qalb I Hyder, Syed, Ali, Muhammad, Ilyas, Nilofar, Channar, Parveen, Mughal, Nazish, Channa, Sumera, Mufti, Khalid, Mufti, Ali Ahsan, Hussain, Mian Iftikhar, Shafiq, Sadia, Tariq, Muhammad, Khan, Muhammad Kamran, Chaudhry, Shahzad Tahir, Choudhary, Abdul Rashid, Ali, Mian Nizam, Ali, Gohar, Hussain, Ashfaq, Rehman, Muhammad, Ahmad, Noman, Farooq, Saeed, Naeem, Farooq, Nasr, Tanveer, Lewis, Glyn, Knowles, James A., Ayub, Muhammad, and Kuchenbaecker, Karoline
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- 2023
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15. A roadmap to increase diversity in genomic studies
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Fatumo, Segun, Chikowore, Tinashe, Choudhury, Ananyo, Ayub, Muhammad, Martin, Alicia R., and Kuchenbaecker, Karoline
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- 2022
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16. Type 2 diabetes risks and determinants in second-generation migrants and mixed ethnicity people of South Asian and African Caribbean descent in the UK
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Farmaki, Aliki-Eleni, Garfield, Victoria, Eastwood, Sophie V., Farmer, Ruth E., Mathur, Rohini, Giannakopoulou, Olga, Patalay, Praveetha, Kuchenbaecker, Karoline, Sattar, Naveed, Hughes, Alun, Bhaskaran, Krishnan, Smeeth, Liam, and Chaturvedi, Nish
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- 2022
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17. Identification of ten variants associated with risk of estrogen-receptor-negative breast cancer
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Milne, Roger L, Kuchenbaecker, Karoline B, Michailidou, Kyriaki, Beesley, Jonathan, Kar, Siddhartha, Lindström, Sara, Hui, Shirley, Lemaçon, Audrey, Soucy, Penny, Dennis, Joe, Jiang, Xia, Rostamianfar, Asha, Finucane, Hilary, Bolla, Manjeet K, McGuffog, Lesley, Wang, Qin, Aalfs, Cora M, Adams, Marcia, Adlard, Julian, Agata, Simona, Ahmed, Shahana, Ahsan, Habibul, Aittomäki, Kristiina, Al-Ejeh, Fares, Allen, Jamie, Ambrosone, Christine B, Amos, Christopher I, Andrulis, Irene L, Anton-Culver, Hoda, Antonenkova, Natalia N, Arndt, Volker, Arnold, Norbert, Aronson, Kristan J, Auber, Bernd, Auer, Paul L, Ausems, Margreet GEM, Azzollini, Jacopo, Bacot, François, Balmaña, Judith, Barile, Monica, Barjhoux, Laure, Barkardottir, Rosa B, Barrdahl, Myrto, Barnes, Daniel, Barrowdale, Daniel, Baynes, Caroline, Beckmann, Matthias W, Benitez, Javier, Bermisheva, Marina, Bernstein, Leslie, Bignon, Yves-Jean, Blazer, Kathleen R, Blok, Marinus J, Blomqvist, Carl, Blot, William, Bobolis, Kristie, Boeckx, Bram, Bogdanova, Natalia V, Bojesen, Anders, Bojesen, Stig E, Bonanni, Bernardo, Børresen-Dale, Anne-Lise, Bozsik, Aniko, Bradbury, Angela R, Brand, Judith S, Brauch, Hiltrud, Brenner, Hermann, Bressac-de Paillerets, Brigitte, Brewer, Carole, Brinton, Louise, Broberg, Per, Brooks-Wilson, Angela, Brunet, Joan, Brüning, Thomas, Burwinkel, Barbara, Buys, Saundra S, Byun, Jinyoung, Cai, Qiuyin, Caldés, Trinidad, Caligo, Maria A, Campbell, Ian, Canzian, Federico, Caron, Olivier, Carracedo, Angel, Carter, Brian D, Castelao, J Esteban, Castera, Laurent, Caux-Moncoutier, Virginie, Chan, Salina B, Chang-Claude, Jenny, Chanock, Stephen J, Chen, Xiaoqing, Cheng, Ting-Yuan David, Chiquette, Jocelyne, Christiansen, Hans, Claes, Kathleen BM, Clarke, Christine L, Conner, Thomas, Conroy, Don M, and Cook, Jackie
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Biological Sciences ,Genetics ,Cancer ,Human Genome ,Prevention ,Breast Cancer ,Aging ,Estrogen ,2.1 Biological and endogenous factors ,Aetiology ,BRCA1 Protein ,Breast Neoplasms ,Female ,Genetic Predisposition to Disease ,Genome-Wide Association Study ,Heterozygote ,Humans ,Mutation ,Polymorphism ,Single Nucleotide ,Receptors ,Estrogen ,Risk Factors ,White People ,ABCTB Investigators ,EMBRACE ,GEMO Study Collaborators ,HEBON ,kConFab/AOCS Investigators ,NBSC Collaborators ,Medical and Health Sciences ,Developmental Biology ,Agricultural biotechnology ,Bioinformatics and computational biology - Abstract
Most common breast cancer susceptibility variants have been identified through genome-wide association studies (GWAS) of predominantly estrogen receptor (ER)-positive disease. We conducted a GWAS using 21,468 ER-negative cases and 100,594 controls combined with 18,908 BRCA1 mutation carriers (9,414 with breast cancer), all of European origin. We identified independent associations at P < 5 × 10-8 with ten variants at nine new loci. At P < 0.05, we replicated associations with 10 of 11 variants previously reported in ER-negative disease or BRCA1 mutation carrier GWAS and observed consistent associations with ER-negative disease for 105 susceptibility variants identified by other studies. These 125 variants explain approximately 16% of the familial risk of this breast cancer subtype. There was high genetic correlation (0.72) between risk of ER-negative breast cancer and breast cancer risk for BRCA1 mutation carriers. These findings may lead to improved risk prediction and inform further fine-mapping and functional work to better understand the biological basis of ER-negative breast cancer.
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- 2017
18. Investigating the association between schizophrenia and distance visual acuity: Mendelian randomisation study – CORRIGENDUM
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Shoham, Natalie, primary, Dunca, Diana, additional, Cooper, Claudia, additional, Hayes, Joseph F., additional, McQuillin, Andrew, additional, Bass, Nick, additional, Lewis, Gemma, additional, and Kuchenbaecker, Karoline, additional
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- 2024
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19. Identification of 12 new susceptibility loci for different histotypes of epithelial ovarian cancer.
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Phelan, Catherine M, Kuchenbaecker, Karoline B, Tyrer, Jonathan P, Kar, Siddhartha P, Lawrenson, Kate, Winham, Stacey J, Dennis, Joe, Pirie, Ailith, Riggan, Marjorie J, Chornokur, Ganna, Earp, Madalene A, Lyra, Paulo C, Lee, Janet M, Coetzee, Simon, Beesley, Jonathan, McGuffog, Lesley, Soucy, Penny, Dicks, Ed, Lee, Andrew, Barrowdale, Daniel, Lecarpentier, Julie, Leslie, Goska, Aalfs, Cora M, Aben, Katja KH, Adams, Marcia, Adlard, Julian, Andrulis, Irene L, Anton-Culver, Hoda, Antonenkova, Natalia, AOCS study group, Aravantinos, Gerasimos, Arnold, Norbert, Arun, Banu K, Arver, Brita, Azzollini, Jacopo, Balmaña, Judith, Banerjee, Susana N, Barjhoux, Laure, Barkardottir, Rosa B, Bean, Yukie, Beckmann, Matthias W, Beeghly-Fadiel, Alicia, Benitez, Javier, Bermisheva, Marina, Bernardini, Marcus Q, Birrer, Michael J, Bjorge, Line, Black, Amanda, Blankstein, Kenneth, Blok, Marinus J, Bodelon, Clara, Bogdanova, Natalia, Bojesen, Anders, Bonanni, Bernardo, Borg, Åke, Bradbury, Angela R, Brenton, James D, Brewer, Carole, Brinton, Louise, Broberg, Per, Brooks-Wilson, Angela, Bruinsma, Fiona, Brunet, Joan, Buecher, Bruno, Butzow, Ralf, Buys, Saundra S, Caldes, Trinidad, Caligo, Maria A, Campbell, Ian, Cannioto, Rikki, Carney, Michael E, Cescon, Terence, Chan, Salina B, Chang-Claude, Jenny, Chanock, Stephen, Chen, Xiao Qing, Chiew, Yoke-Eng, Chiquette, Jocelyne, Chung, Wendy K, Claes, Kathleen BM, Conner, Thomas, Cook, Linda S, Cook, Jackie, Cramer, Daniel W, Cunningham, Julie M, D'Aloisio, Aimee A, Daly, Mary B, Damiola, Francesca, Damirovna, Sakaeva Dina, Dansonka-Mieszkowska, Agnieszka, Dao, Fanny, Davidson, Rosemarie, DeFazio, Anna, Delnatte, Capucine, Doheny, Kimberly F, Diez, Orland, Ding, Yuan Chun, Doherty, Jennifer Anne, Domchek, Susan M, and Dorfling, Cecilia M
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AOCS study group ,EMBRACE Study ,GEMO Study Collaborators ,HEBON Study ,KConFab Investigators ,OPAL study group ,Humans ,Neoplasms ,Glandular and Epithelial ,Ovarian Neoplasms ,Genetic Predisposition to Disease ,Telomere-Binding Proteins ,BRCA1 Protein ,BRCA2 Protein ,Risk Factors ,Genotype ,Mutation ,Polymorphism ,Single Nucleotide ,Alleles ,Female ,Meta-Analysis as Topic ,Genome-Wide Association Study ,Genetic Loci ,Carcinoma ,Ovarian Epithelial ,Genetics ,Cancer ,Human Genome ,Rare Diseases ,Prevention ,Ovarian Cancer ,Aetiology ,2.1 Biological and endogenous factors ,Biological Sciences ,Medical and Health Sciences ,Developmental Biology - Abstract
To identify common alleles associated with different histotypes of epithelial ovarian cancer (EOC), we pooled data from multiple genome-wide genotyping projects totaling 25,509 EOC cases and 40,941 controls. We identified nine new susceptibility loci for different EOC histotypes: six for serous EOC histotypes (3q28, 4q32.3, 8q21.11, 10q24.33, 18q11.2 and 22q12.1), two for mucinous EOC (3q22.3 and 9q31.1) and one for endometrioid EOC (5q12.3). We then performed meta-analysis on the results for high-grade serous ovarian cancer with the results from analysis of 31,448 BRCA1 and BRCA2 mutation carriers, including 3,887 mutation carriers with EOC. This identified three additional susceptibility loci at 2q13, 8q24.1 and 12q24.31. Integrated analyses of genes and regulatory biofeatures at each locus predicted candidate susceptibility genes, including OBFC1, a new candidate susceptibility gene for low-grade and borderline serous EOC.
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- 2017
20. Missing heritability found for height
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Kuchenbaecker, Karoline
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- 2022
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21. Is auditory processing measured by the N100 an endophenotype for psychosis? A family study and a meta-analysis.
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Wang, Baihan, Otten, Leun J., Schulze, Katja, Afrah, Hana, Varney, Lauren, Cotic, Marius, Saadullah Khani, Noushin, Linden, Jennifer F., Kuchenbaecker, Karoline, McQuillin, Andrew, Hall, Mei-Hua, and Bramon, Elvira
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MEDICAL information storage & retrieval systems ,META-analysis ,DESCRIPTIVE statistics ,SYSTEMATIC reviews ,MEDLINE ,PARADIGMS (Social sciences) ,MEDICAL records ,ACQUISITION of data ,PSYCHOSES ,ONLINE information services ,COMPARATIVE studies ,AUDITORY perception ,AUDITORY evoked response ,PHENOTYPES ,PSYCHOLOGY information storage & retrieval systems - Abstract
Background: The N100, an early auditory event-related potential, has been found to be altered in patients with psychosis. However, it is unclear if the N100 is a psychosis endophenotype that is also altered in the relatives of patients. Methods: We conducted a family study using the auditory oddball paradigm to compare the N100 amplitude and latency across 243 patients with psychosis, 86 unaffected relatives, and 194 controls. We then conducted a systematic review and a random-effects meta-analysis pooling our results and 14 previously published family studies. We compared data from a total of 999 patients, 1192 relatives, and 1253 controls in order to investigate the evidence and degree of N100 differences. Results: In our family study, patients showed reduced N100 amplitudes and prolonged N100 latencies compared to controls, but no significant differences were found between unaffected relatives and controls. The meta-analysis revealed a significant reduction of the N100 amplitude and delay of the N100 latency in both patients with psychosis (standardized mean difference [s.m.d.] = −0.48 for N100 amplitude and s.m.d. = 0.43 for N100 latency) and their relatives (s.m.d. = − 0.19 for N100 amplitude and s.m.d. = 0.33 for N100 latency). However, only the N100 latency changes in relatives remained significant when excluding studies with affected relatives. Conclusions: N100 changes, especially prolonged N100 latencies, are present in both patients with psychosis and their relatives, making the N100 a promising endophenotype for psychosis. Such changes in the N100 may reflect changes in early auditory processing underlying the etiology of psychosis. [ABSTRACT FROM AUTHOR]
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- 2024
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22. Identification of independent association signals and putative functional variants for breast cancer risk through fine-scale mapping of the 12p11 locus
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Zeng, Chenjie, Guo, Xingyi, Long, Jirong, Kuchenbaecker, Karoline B, Droit, Arnaud, Michailidou, Kyriaki, Ghoussaini, Maya, Kar, Siddhartha, Freeman, Adam, Hopper, John L, Milne, Roger L, Bolla, Manjeet K, Wang, Qin, Dennis, Joe, Agata, Simona, Ahmed, Shahana, Aittomäki, Kristiina, Andrulis, Irene L, Anton-Culver, Hoda, Antonenkova, Natalia N, Arason, Adalgeir, Arndt, Volker, Arun, Banu K, Arver, Brita, Bacot, Francois, Barrowdale, Daniel, Baynes, Caroline, Beeghly-Fadiel, Alicia, Benitez, Javier, Bermisheva, Marina, Blomqvist, Carl, Blot, William J, Bogdanova, Natalia V, Bojesen, Stig E, Bonanni, Bernardo, Borresen-Dale, Anne-Lise, Brand, Judith S, Brauch, Hiltrud, Brennan, Paul, Brenner, Hermann, Broeks, Annegien, Brüning, Thomas, Burwinkel, Barbara, Buys, Saundra S, Cai, Qiuyin, Caldes, Trinidad, Campbell, Ian, Carpenter, Jane, Chang-Claude, Jenny, Choi, Ji-Yeob, Claes, Kathleen B. M, Clarke, Christine, Cox, Angela, Cross, Simon S, Czene, Kamila, Daly, Mary B, de la Hoya, Miguel, De Leeneer, Kim, Devilee, Peter, Diez, Orland, Domchek, Susan M, Doody, Michele, Dorfling, Cecilia M, Dörk, Thilo, dos-Santos-Silva, Isabel, Dumont, Martine, Dwek, Miriam, Dworniczak, Bernd, Egan, Kathleen, Eilber, Ursula, Einbeigi, Zakaria, Ejlertsen, Bent, Ellis, Steve, Frost, Debra, Lalloo, Fiona, Fasching, Peter A, Figueroa, Jonine, Flyger, Henrik, Friedlander, Michael, Friedman, Eitan, Gambino, Gaetana, Gao, Yu-Tang, Garber, Judy, GarcÃa-Closas, Montserrat, Gehrig, Andrea, Damiola, Francesca, Lesueur, Fabienne, Mazoyer, Sylvie, Stoppa-Lyonnet, Dominique, Giles, Graham G, Godwin, Andrew K, Goldgar, David E, González-Neira, Anna, Greene, Mark H, Guénel, Pascal, Haeberle, Lothar, Haiman, Christopher A, Hallberg, Emily, Hamann, Ute, and Hansen, Thomas V. O
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- 2016
23. Identification of four novel susceptibility loci for oestrogen receptor negative breast cancer.
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Couch, Fergus J, Kuchenbaecker, Karoline B, Michailidou, Kyriaki, Mendoza-Fandino, Gustavo A, Nord, Silje, Lilyquist, Janna, Olswold, Curtis, Hallberg, Emily, Agata, Simona, Ahsan, Habibul, Aittomäki, Kristiina, Ambrosone, Christine, Andrulis, Irene L, Anton-Culver, Hoda, Arndt, Volker, Arun, Banu K, Arver, Brita, Barile, Monica, Barkardottir, Rosa B, Barrowdale, Daniel, Beckmann, Lars, Beckmann, Matthias W, Benitez, Javier, Blank, Stephanie V, Blomqvist, Carl, Bogdanova, Natalia V, Bojesen, Stig E, Bolla, Manjeet K, Bonanni, Bernardo, Brauch, Hiltrud, Brenner, Hermann, Burwinkel, Barbara, Buys, Saundra S, Caldes, Trinidad, Caligo, Maria A, Canzian, Federico, Carpenter, Jane, Chang-Claude, Jenny, Chanock, Stephen J, Chung, Wendy K, Claes, Kathleen BM, Cox, Angela, Cross, Simon S, Cunningham, Julie M, Czene, Kamila, Daly, Mary B, Damiola, Francesca, Darabi, Hatef, de la Hoya, Miguel, Devilee, Peter, Diez, Orland, Ding, Yuan C, Dolcetti, Riccardo, Domchek, Susan M, Dorfling, Cecilia M, Dos-Santos-Silva, Isabel, Dumont, Martine, Dunning, Alison M, Eccles, Diana M, Ehrencrona, Hans, Ekici, Arif B, Eliassen, Heather, Ellis, Steve, Fasching, Peter A, Figueroa, Jonine, Flesch-Janys, Dieter, Försti, Asta, Fostira, Florentia, Foulkes, William D, Friebel, Tara, Friedman, Eitan, Frost, Debra, Gabrielson, Marike, Gammon, Marilie D, Ganz, Patricia A, Gapstur, Susan M, Garber, Judy, Gaudet, Mia M, Gayther, Simon A, Gerdes, Anne-Marie, Ghoussaini, Maya, Giles, Graham G, Glendon, Gord, Godwin, Andrew K, Goldberg, Mark S, Goldgar, David E, González-Neira, Anna, Greene, Mark H, Gronwald, Jacek, Guénel, Pascal, Gunter, Marc, Haeberle, Lothar, Haiman, Christopher A, Hamann, Ute, Hansen, Thomas VO, Hart, Steven, Healey, Sue, Heikkinen, Tuomas, Henderson, Brian E, and Herzog, Josef
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Chromosomes ,Human ,Pair 2 ,Humans ,Breast Neoplasms ,Genetic Predisposition to Disease ,Cyclophilins ,tRNA Methyltransferases ,BRCA1 Protein ,Receptors ,Estrogen ,Risk Factors ,Genotype ,Heterozygote ,Mutation ,Polymorphism ,Single Nucleotide ,Female ,Genome-Wide Association Study ,Chromosomes ,Human ,Pair 2 ,Receptors ,Estrogen ,Polymorphism ,Single Nucleotide ,Breast Cancer ,Cancer ,Prevention ,Genetics ,Human Genome ,2.1 Biological and endogenous factors - Abstract
Common variants in 94 loci have been associated with breast cancer including 15 loci with genome-wide significant associations (P
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- 2016
24. Breast cancer risk variants at 6q25 display different phenotype associations and regulate ESR1, RMND1 and CCDC170.
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Dunning, Alison M, Michailidou, Kyriaki, Kuchenbaecker, Karoline B, Thompson, Deborah, French, Juliet D, Beesley, Jonathan, Healey, Catherine S, Kar, Siddhartha, Pooley, Karen A, Lopez-Knowles, Elena, Dicks, Ed, Barrowdale, Daniel, Sinnott-Armstrong, Nicholas A, Sallari, Richard C, Hillman, Kristine M, Kaufmann, Susanne, Sivakumaran, Haran, Moradi Marjaneh, Mahdi, Lee, Jason S, Hills, Margaret, Jarosz, Monika, Drury, Suzie, Canisius, Sander, Bolla, Manjeet K, Dennis, Joe, Wang, Qin, Hopper, John L, Southey, Melissa C, Broeks, Annegien, Schmidt, Marjanka K, Lophatananon, Artitaya, Muir, Kenneth, Beckmann, Matthias W, Fasching, Peter A, Dos-Santos-Silva, Isabel, Peto, Julian, Sawyer, Elinor J, Tomlinson, Ian, Burwinkel, Barbara, Marme, Frederik, Guénel, Pascal, Truong, Thérèse, Bojesen, Stig E, Flyger, Henrik, González-Neira, Anna, Perez, Jose IA, Anton-Culver, Hoda, Eunjung, Lee, Arndt, Volker, Brenner, Hermann, Meindl, Alfons, Schmutzler, Rita K, Brauch, Hiltrud, Hamann, Ute, Aittomäki, Kristiina, Blomqvist, Carl, Ito, Hidemi, Matsuo, Keitaro, Bogdanova, Natasha, Dörk, Thilo, Lindblom, Annika, Margolin, Sara, Kosma, Veli-Matti, Mannermaa, Arto, Tseng, Chiu-Chen, Wu, Anna H, Lambrechts, Diether, Wildiers, Hans, Chang-Claude, Jenny, Rudolph, Anja, Peterlongo, Paolo, Radice, Paolo, Olson, Janet E, Giles, Graham G, Milne, Roger L, Haiman, Christopher A, Henderson, Brian E, Goldberg, Mark S, Teo, Soo H, Yip, Cheng Har, Nord, Silje, Borresen-Dale, Anne-Lise, Kristensen, Vessela, Long, Jirong, Zheng, Wei, Pylkäs, Katri, Winqvist, Robert, Andrulis, Irene L, Knight, Julia A, Devilee, Peter, Seynaeve, Caroline, Figueroa, Jonine, Sherman, Mark E, Czene, Kamila, Darabi, Hatef, Hollestelle, Antoinette, van den Ouweland, Ans MW, Humphreys, Keith, Gao, Yu-Tang, and Shu, Xiao-Ou
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EMBRACE ,GEMO Study Collaborators ,HEBON ,kConFab Investigators ,Chromosomes ,Human ,Pair 6 ,Humans ,Breast Neoplasms ,Genetic Predisposition to Disease ,Carrier Proteins ,Cell Cycle Proteins ,Estrogen Receptor alpha ,Risk Factors ,Gene Expression ,Gene Expression Regulation ,Neoplastic ,Base Sequence ,Protein Binding ,Phenotype ,Polymorphism ,Single Nucleotide ,Female ,Genetic Association Studies ,Cancer ,Clinical Research ,Breast Cancer ,Genetics ,Aetiology ,2.1 Biological and endogenous factors ,Biological Sciences ,Medical and Health Sciences ,Developmental Biology - Abstract
We analyzed 3,872 common genetic variants across the ESR1 locus (encoding estrogen receptor α) in 118,816 subjects from three international consortia. We found evidence for at least five independent causal variants, each associated with different phenotype sets, including estrogen receptor (ER(+) or ER(-)) and human ERBB2 (HER2(+) or HER2(-)) tumor subtypes, mammographic density and tumor grade. The best candidate causal variants for ER(-) tumors lie in four separate enhancer elements, and their risk alleles reduce expression of ESR1, RMND1 and CCDC170, whereas the risk alleles of the strongest candidates for the remaining independent causal variant disrupt a silencer element and putatively increase ESR1 and RMND1 expression.
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- 2016
25. Fine-Scale Mapping at 9p22.2 Identifies Candidate Causal Variants That Modify Ovarian Cancer Risk in BRCA1 and BRCA2 Mutation Carriers.
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Vigorito, Elena, Kuchenbaecker, Karoline B, Beesley, Jonathan, Adlard, Julian, Agnarsson, Bjarni A, Andrulis, Irene L, Arun, Banu K, Barjhoux, Laure, Belotti, Muriel, Benitez, Javier, Berger, Andreas, Bojesen, Anders, Bonanni, Bernardo, Brewer, Carole, Caldes, Trinidad, Caligo, Maria A, Campbell, Ian, Chan, Salina B, Claes, Kathleen BM, Cohn, David E, Cook, Jackie, Daly, Mary B, Damiola, Francesca, Davidson, Rosemarie, Pauw, Antoine de, Delnatte, Capucine, Diez, Orland, Domchek, Susan M, Dumont, Martine, Durda, Katarzyna, Dworniczak, Bernd, Easton, Douglas F, Eccles, Diana, Edwinsdotter Ardnor, Christina, Eeles, Ros, Ejlertsen, Bent, Ellis, Steve, Evans, D Gareth, Feliubadalo, Lidia, Fostira, Florentia, Foulkes, William D, Friedman, Eitan, Frost, Debra, Gaddam, Pragna, Ganz, Patricia A, Garber, Judy, Garcia-Barberan, Vanesa, Gauthier-Villars, Marion, Gehrig, Andrea, Gerdes, Anne-Marie, Giraud, Sophie, Godwin, Andrew K, Goldgar, David E, Hake, Christopher R, Hansen, Thomas VO, Healey, Sue, Hodgson, Shirley, Hogervorst, Frans BL, Houdayer, Claude, Hulick, Peter J, Imyanitov, Evgeny N, Isaacs, Claudine, Izatt, Louise, Izquierdo, Angel, Jacobs, Lauren, Jakubowska, Anna, Janavicius, Ramunas, Jaworska-Bieniek, Katarzyna, Jensen, Uffe Birk, John, Esther M, Vijai, Joseph, Karlan, Beth Y, Kast, Karin, KConFab Investigators, Khan, Sofia, Kwong, Ava, Laitman, Yael, Lester, Jenny, Lesueur, Fabienne, Liljegren, Annelie, Lubinski, Jan, Mai, Phuong L, Manoukian, Siranoush, Mazoyer, Sylvie, Meindl, Alfons, Mensenkamp, Arjen R, Montagna, Marco, Nathanson, Katherine L, Neuhausen, Susan L, Nevanlinna, Heli, Niederacher, Dieter, Olah, Edith, Olopade, Olufunmilayo I, Ong, Kai-Ren, Osorio, Ana, Park, Sue Kyung, Paulsson-Karlsson, Ylva, Pedersen, Inge Sokilde, Peissel, Bernard, and Peterlongo, Paolo
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KConFab Investigators ,Chromosomes ,Human ,Pair 9 ,Humans ,Ovarian Neoplasms ,Genetic Predisposition to Disease ,Chromosome Mapping ,Polymorphism ,Single Nucleotide ,Genes ,BRCA1 ,Genes ,BRCA2 ,Female ,Genetic Carrier Screening ,General Science & Technology - Abstract
Population-based genome wide association studies have identified a locus at 9p22.2 associated with ovarian cancer risk, which also modifies ovarian cancer risk in BRCA1 and BRCA2 mutation carriers. We conducted fine-scale mapping at 9p22.2 to identify potential causal variants in BRCA1 and BRCA2 mutation carriers. Genotype data were available for 15,252 (2,462 ovarian cancer cases) BRCA1 and 8,211 (631 ovarian cancer cases) BRCA2 mutation carriers. Following genotype imputation, ovarian cancer associations were assessed for 4,873 and 5,020 SNPs in BRCA1 and BRCA 2 mutation carriers respectively, within a retrospective cohort analytical framework. In BRCA1 mutation carriers one set of eight correlated candidate causal variants for ovarian cancer risk modification was identified (top SNP rs10124837, HR: 0.73, 95%CI: 0.68 to 0.79, p-value 2× 10-16). These variants were located up to 20 kb upstream of BNC2. In BRCA2 mutation carriers one region, up to 45 kb upstream of BNC2, and containing 100 correlated SNPs was identified as candidate causal (top SNP rs62543585, HR: 0.69, 95%CI: 0.59 to 0.80, p-value 1.0 × 10-6). The candidate causal in BRCA1 mutation carriers did not include the strongest associated variant at this locus in the general population. In sum, we identified a set of candidate causal variants in a region that encompasses the BNC2 transcription start site. The ovarian cancer association at 9p22.2 may be mediated by different variants in BRCA1 mutation carriers and in the general population. Thus, potentially different mechanisms may underlie ovarian cancer risk for mutation carriers and the general population.
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- 2016
26. An original phylogenetic approach identified mitochondrial haplogroup T1a1 as inversely associated with breast cancer risk in BRCA2 mutation carriers
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Blein, Sophie, Bardel, Claire, Danjean, Vincent, McGuffog, Lesley, Healey, Sue, Barrowdale, Daniel, Lee, Andrew, Dennis, Joe, Kuchenbaecker, Karoline B, Soucy, Penny, Terry, Mary Beth, Chung, Wendy K, Goldgar, David E, Buys, Saundra S, Breast Cancer Family Registry, Janavicius, Ramunas, Tihomirova, Laima, Tung, Nadine, Dorfling, Cecilia M, van Rensburg, Elizabeth J, Neuhausen, Susan L, Ding, Yuan Chun, Gerdes, Anne-Marie, Ejlertsen, Bent, Nielsen, Finn C, Hansen, Thomas VO, Osorio, Ana, Benitez, Javier, Conejero, Raquel Andrés, Segota, Ena, Weitzel, Jeffrey N, Thelander, Margo, Peterlongo, Paolo, Radice, Paolo, Pensotti, Valeria, Dolcetti, Riccardo, Bonanni, Bernardo, Peissel, Bernard, Zaffaroni, Daniela, Scuvera, Giulietta, Manoukian, Siranoush, Varesco, Liliana, Capone, Gabriele L, Papi, Laura, Ottini, Laura, Yannoukakos, Drakoulis, Konstantopoulou, Irene, Garber, Judy, Hamann, Ute, Donaldson, Alan, Brady, Angela, Brewer, Carole, Foo, Claire, Evans, D Gareth, Frost, Debra, Eccles, Diana, EMBRACE, Douglas, Fiona, Cook, Jackie, Adlard, Julian, Barwell, Julian, Walker, Lisa, Izatt, Louise, Side, Lucy E, Kennedy, M John, Tischkowitz, Marc, Rogers, Mark T, Porteous, Mary E, Morrison, Patrick J, Platte, Radka, Eeles, Ros, Davidson, Rosemarie, Hodgson, Shirley, Cole, Trevor, Godwin, Andrew K, Isaacs, Claudine, Claes, Kathleen, De Leeneer, Kim, Meindl, Alfons, Gehrig, Andrea, Wappenschmidt, Barbara, Sutter, Christian, Engel, Christoph, Niederacher, Dieter, Steinemann, Doris, Plendl, Hansjoerg, Kast, Karin, Rhiem, Kerstin, Ditsch, Nina, Arnold, Norbert, Varon-Mateeva, Raymonda, Schmutzler, Rita K, Preisler-Adams, Sabine, Markov, Nadja Bogdanova, Wang-Gohrke, Shan, de Pauw, Antoine, Lefol, Cédrick, Lasset, Christine, Leroux, Dominique, and Rouleau, Etienne
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Biomedical and Clinical Sciences ,Oncology and Carcinogenesis ,Genetics ,Breast Cancer ,Cancer ,2.1 Biological and endogenous factors ,Aetiology ,BRCA1 Protein ,Breast Neoplasms ,Female ,Genes ,BRCA2 ,Genes ,Mitochondrial ,Genetic Predisposition to Disease ,Haplotypes ,Heterozygote ,Humans ,Mutation ,Phylogeny ,Risk ,Breast Cancer Family Registry ,EMBRACE ,GEMO Study Collaborators ,HEBON ,Oncology & Carcinogenesis ,Oncology and carcinogenesis - Abstract
IntroductionIndividuals carrying pathogenic mutations in the BRCA1 and BRCA2 genes have a high lifetime risk of breast cancer. BRCA1 and BRCA2 are involved in DNA double-strand break repair, DNA alterations that can be caused by exposure to reactive oxygen species, a main source of which are mitochondria. Mitochondrial genome variations affect electron transport chain efficiency and reactive oxygen species production. Individuals with different mitochondrial haplogroups differ in their metabolism and sensitivity to oxidative stress. Variability in mitochondrial genetic background can alter reactive oxygen species production, leading to cancer risk. In the present study, we tested the hypothesis that mitochondrial haplogroups modify breast cancer risk in BRCA1/2 mutation carriers.MethodsWe genotyped 22,214 (11,421 affected, 10,793 unaffected) mutation carriers belonging to the Consortium of Investigators of Modifiers of BRCA1/2 for 129 mitochondrial polymorphisms using the iCOGS array. Haplogroup inference and association detection were performed using a phylogenetic approach. ALTree was applied to explore the reference mitochondrial evolutionary tree and detect subclades enriched in affected or unaffected individuals.ResultsWe discovered that subclade T1a1 was depleted in affected BRCA2 mutation carriers compared with the rest of clade T (hazard ratio (HR) = 0.55; 95% confidence interval (CI), 0.34 to 0.88; P = 0.01). Compared with the most frequent haplogroup in the general population (that is, H and T clades), the T1a1 haplogroup has a HR of 0.62 (95% CI, 0.40 to 0.95; P = 0.03). We also identified three potential susceptibility loci, including G13708A/rs28359178, which has demonstrated an inverse association with familial breast cancer risk.ConclusionsThis study illustrates how original approaches such as the phylogeny-based method we used can empower classical molecular epidemiological studies aimed at identifying association or risk modification effects.
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- 2015
27. Genetic modifiers of breast and ovarian cancer risk in BRCA1 and BRCA2 mutation carriers
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Kuchenbaecker, Karoline Bernhardine Elisabeth Karla Ursula
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614 - Published
- 2015
28. Cell-type-specific enrichment of risk-associated regulatory elements at ovarian cancer susceptibility loci
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Coetzee, Simon G, Shen, Howard C, Hazelett, Dennis J, Lawrenson, Kate, Kuchenbaecker, Karoline, Tyrer, Jonathan, Rhie, Suhn K, Levanon, Keren, Karst, Alison, Drapkin, Ronny, Ramus, Susan J, Consortium, The Consortium of Investigators of Modifiers of BRCA1 2 The Ovarian Cancer Association, Couch, Fergus J, Offit, Kenneth, Chenevix-Trench, Georgia, Monteiro, Alvaro NA, Antoniou, Antonis, Freedman, Matthew, Coetzee, Gerhard A, Pharoah, Paul DP, Noushmehr, Houtan, Gayther, Simon A, Anton-Culver, Hoda, Antonenkova, Natalia, Baker, Helen, Bandera, Elisa V, Bean, Yukie, Beckmann, Matthias W, Berchuck, Andrew, Bisogna, Maria, Bjorge, Line, Bogdanova, Natalia, Brinton, Louise A, Brooks-Wilson, Angela, Bruinsma, Fiona, Butzow, Ralf, Campbell, Ian G, Carty, Karen, Chang-Claude, Jenny, Chen, Ann, Chen, Zhihua, Cook, Linda S, Cramer, Daniel W, Cunningham, Julie M, Cybulski, Cezary, Dansonka-Mieszkowska, Agnieszka, Dennis, Joe, Dicks, Ed, Doherty, Jennifer A, Dörk, Thilo, du Bois, Andreas, Dürst, Matthias, Eccles, Diana, Easton, Douglas F, Edwards, Robert P, Eilber, Ursula, Ekici, Arif B, Fasching, Peter A, Fridley, Brooke L, Gao, Yu-Tang, Gentry-Maharaj, Aleksandra, Giles, Graham G, Glasspool, Rosalind, Goode, Ellen L, Goodman, Marc T, Grownwald, Jacek, Harrington, Patricia, Harter, Philipp, Hasmad, Hanis Nazihah, Hein, Alexander, Heitz, Florian, Hildebrandt, Michelle AT, Hillemanns, Peter, Hogdall, Estrid, Hogdall, Claus, Hosono, Satoyo, Iversen, Edwin S, Jakubowska, Anna, James, Paul, Jensen, Allan, Ji, Bu-Tian, Karlan, Beth Y, Kjaer, Susanne Kruger, Kelemen, Linda E, Kellar, Melissa, Kelley, Joseph L, Kiemeney, Lambertus A, Krakstad, Camilla, Kupryjanczyk, Jolanta, Lambrechts, Diether, Lambrechts, Sandrina, Le, Nhu D, Lele, Shashi, Leminen, Arto, Lester, Jenny, Levine, Douglas A, Liang, Dong, and Lissowska, Jolanta
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Biological Sciences ,Genetics ,Rare Diseases ,Prevention ,Human Genome ,Ovarian Cancer ,Biotechnology ,Cancer ,2.1 Biological and endogenous factors ,Underpinning research ,Aetiology ,1.1 Normal biological development and functioning ,Chromatin ,Female ,Genetic Predisposition to Disease ,Genome-Wide Association Study ,Histones ,Humans ,Organ Specificity ,Ovarian Neoplasms ,Polymorphism ,Single Nucleotide ,Regulatory Sequences ,Nucleic Acid ,Ovarian Cancer Association Consortium ,The Consortium of Investigators of Modifiers of BRCA1/2 ,Ovarian Cancer Association Consortium The Consortium of Investigators of Modifiers of BRCA1/2 ,Medical and Health Sciences ,Genetics & Heredity - Abstract
Understanding the regulatory landscape of the human genome is a central question in complex trait genetics. Most single-nucleotide polymorphisms (SNPs) associated with cancer risk lie in non-protein-coding regions, implicating regulatory DNA elements as functional targets of susceptibility variants. Here, we describe genome-wide annotation of regions of open chromatin and histone modification in fallopian tube and ovarian surface epithelial cells (FTSECs, OSECs), the debated cellular origins of high-grade serous ovarian cancers (HGSOCs) and in endometriosis epithelial cells (EECs), the likely precursor of clear cell ovarian carcinomas (CCOCs). The regulatory architecture of these cell types was compared with normal human mammary epithelial cells and LNCaP prostate cancer cells. We observed similar positional patterns of global enhancer signatures across the three different ovarian cancer precursor cell types, and evidence of tissue-specific regulatory signatures compared to non-gynecological cell types. We found significant enrichment for risk-associated SNPs intersecting regulatory biofeatures at 17 known HGSOC susceptibility loci in FTSECs (P = 3.8 × 10(-30)), OSECs (P = 2.4 × 10(-23)) and HMECs (P = 6.7 × 10(-15)) but not for EECs (P = 0.45) or LNCaP cells (P = 0.88). Hierarchical clustering of risk SNPs conditioned on the six different cell types indicates FTSECs and OSECs are highly related (96% of samples using multi-scale bootstrapping) suggesting both cell types may be precursors of HGSOC. These data represent the first description of regulatory catalogues of normal precursor cells for different ovarian cancer subtypes, and provide unique insights into the tissue specific regulatory variation with respect to the likely functional targets of germline genetic susceptibility variants for ovarian cancer.
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- 2015
29. Identification of six new susceptibility loci for invasive epithelial ovarian cancer.
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Kuchenbaecker, Karoline B, Ramus, Susan J, Tyrer, Jonathan, Lee, Andrew, Shen, Howard C, Beesley, Jonathan, Lawrenson, Kate, McGuffog, Lesley, Healey, Sue, Lee, Janet M, Spindler, Tassja J, Lin, Yvonne G, Pejovic, Tanja, Bean, Yukie, Li, Qiyuan, Coetzee, Simon, Hazelett, Dennis, Miron, Alexander, Southey, Melissa, Terry, Mary Beth, Goldgar, David E, Buys, Saundra S, Janavicius, Ramunas, Dorfling, Cecilia M, van Rensburg, Elizabeth J, Neuhausen, Susan L, Ding, Yuan Chun, Hansen, Thomas VO, Jønson, Lars, Gerdes, Anne-Marie, Ejlertsen, Bent, Barrowdale, Daniel, Dennis, Joe, Benitez, Javier, Osorio, Ana, Garcia, Maria Jose, Komenaka, Ian, Weitzel, Jeffrey N, Ganschow, Pamela, Peterlongo, Paolo, Bernard, Loris, Viel, Alessandra, Bonanni, Bernardo, Peissel, Bernard, Manoukian, Siranoush, Radice, Paolo, Papi, Laura, Ottini, Laura, Fostira, Florentia, Konstantopoulou, Irene, Garber, Judy, Frost, Debra, Perkins, Jo, Platte, Radka, Ellis, Steve, EMBRACE, Godwin, Andrew K, Schmutzler, Rita Katharina, Meindl, Alfons, Engel, Christoph, Sutter, Christian, Sinilnikova, Olga M, GEMO Study Collaborators, Damiola, Francesca, Mazoyer, Sylvie, Stoppa-Lyonnet, Dominique, Claes, Kathleen, De Leeneer, Kim, Kirk, Judy, Rodriguez, Gustavo C, Piedmonte, Marion, O'Malley, David M, de la Hoya, Miguel, Caldes, Trinidad, Aittomäki, Kristiina, Nevanlinna, Heli, Collée, J Margriet, Rookus, Matti A, Oosterwijk, Jan C, Breast Cancer Family Registry, Tihomirova, Laima, Tung, Nadine, Hamann, Ute, Isaccs, Claudine, Tischkowitz, Marc, Imyanitov, Evgeny N, Caligo, Maria A, Campbell, Ian G, Hogervorst, Frans BL, HEBON, Olah, Edith, Diez, Orland, Blanco, Ignacio, Brunet, Joan, Lazaro, Conxi, Pujana, Miquel Angel, Jakubowska, Anna, Gronwald, Jacek, Lubinski, Jan, and Sukiennicki, Grzegorz
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EMBRACE ,GEMO Study Collaborators ,Breast Cancer Family Registry ,HEBON ,KConFab Investigators ,Australian Cancer Study ,Australian Ovarian Cancer Study Group ,Consortium of Investigators of Modifiers of BRCA1 and BRCA2 ,Humans ,Neoplasms ,Glandular and Epithelial ,Ovarian Neoplasms ,Genetic Predisposition to Disease ,BRCA1 Protein ,BRCA2 Protein ,Risk ,Genotype ,Heterozygote ,Mutation ,Polymorphism ,Single Nucleotide ,Alleles ,Genes ,Reporter ,Quantitative Trait Loci ,Adolescent ,Adult ,Female ,Genome-Wide Association Study ,Young Adult ,Carcinoma ,Ovarian Epithelial ,Human Genome ,Rare Diseases ,Genetics ,Cancer ,Prevention ,Ovarian Cancer ,2.1 Biological and endogenous factors ,Aetiology ,Biological Sciences ,Medical and Health Sciences ,Developmental Biology - Abstract
Genome-wide association studies (GWAS) have identified 12 epithelial ovarian cancer (EOC) susceptibility alleles. The pattern of association at these loci is consistent in BRCA1 and BRCA2 mutation carriers who are at high risk of EOC. After imputation to 1000 Genomes Project data, we assessed associations of 11 million genetic variants with EOC risk from 15,437 cases unselected for family history and 30,845 controls and from 15,252 BRCA1 mutation carriers and 8,211 BRCA2 mutation carriers (3,096 with ovarian cancer), and we combined the results in a meta-analysis. This new study design yielded increased statistical power, leading to the discovery of six new EOC susceptibility loci. Variants at 1p36 (nearest gene, WNT4), 4q26 (SYNPO2), 9q34.2 (ABO) and 17q11.2 (ATAD5) were associated with EOC risk, and at 1p34.3 (RSPO1) and 6p22.1 (GPX6) variants were specifically associated with the serous EOC subtype, all with P < 5 × 10(-8). Incorporating these variants into risk assessment tools will improve clinical risk predictions for BRCA1 and BRCA2 mutation carriers.
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- 2015
30. Assessing associations between the AURKA-HMMR-TPX2-TUBG1 functional module and breast cancer risk in BRCA1/2 mutation carriers.
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Blanco, Ignacio, Kuchenbaecker, Karoline, Cuadras, Daniel, Wang, Xianshu, Barrowdale, Daniel, de Garibay, Gorka, Librado, Pablo, Sánchez-Gracia, Alejandro, Rozas, Julio, Bonifaci, Núria, McGuffog, Lesley, Pankratz, Vernon, Islam, Abul, Mateo, Francesca, Berenguer, Antoni, Petit, Anna, Català, Isabel, Brunet, Joan, Feliubadaló, Lidia, Tornero, Eva, Benítez, Javier, Osorio, Ana, Ramón y Cajal, Teresa, Nevanlinna, Heli, Aittomäki, Kristiina, Arun, Banu, Toland, Amanda, Karlan, Beth, Walsh, Christine, Lester, Jenny, Greene, Mark, Mai, Phuong, Nussbaum, Robert, Andrulis, Irene, Domchek, Susan, Nathanson, Katherine, Rebbeck, Timothy, Barkardottir, Rosa, Jakubowska, Anna, Lubinski, Jan, Durda, Katarzyna, Jaworska-Bieniek, Katarzyna, Claes, Kathleen, Van Maerken, Tom, Díez, Orland, Hansen, Thomas, Jønson, Lars, Gerdes, Anne-Marie, Ejlertsen, Bent, de la Hoya, Miguel, Caldés, Trinidad, Dunning, Alison, Oliver, Clare, Fineberg, Elena, Cook, Margaret, Peock, Susan, McCann, Emma, Murray, Alex, Jacobs, Chris, Pichert, Gabriella, Lalloo, Fiona, Chu, Carol, Dorkins, Huw, Paterson, Joan, Ong, Kai-Ren, Teixeira, Manuel, Hogervorst, Frans, van der Hout, Annemarie, Seynaeve, Caroline, van der Luijt, Rob, Ligtenberg, Marjolijn, Devilee, Peter, Wijnen, Juul, Rookus, Matti, Meijers-Heijboer, Hanne, Blok, Marinus, van den Ouweland, Ans, Aalfs, Cora, Rodriguez, Gustavo, Phillips, Kelly-Anne, Piedmonte, Marion, Nerenstone, Stacy, Bae-Jump, Victoria, OMalley, David, Ratner, Elena, Schmutzler, Rita, Wappenschmidt, Barbara, Rhiem, Kerstin, Engel, Christoph, Meindl, Alfons, Ditsch, Nina, Arnold, Norbert, Plendl, Hansjoerg, Niederacher, Dieter, Sutter, Christian, Wang-Gohrke, Shan, Steinemann, Doris, Preisler-Adams, Sabine, Kast, Karin, and Varon-Mateeva, Raymonda
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Aurora Kinase A ,Breast Neoplasms ,Carcinogenesis ,Cell Cycle Proteins ,Estrogen Receptor alpha ,Evolution ,Molecular ,Extracellular Matrix Proteins ,Female ,Genes ,BRCA1 ,Genes ,BRCA2 ,Genetic Loci ,Genetic Predisposition to Disease ,Humans ,Hyaluronan Receptors ,Likelihood Functions ,Mammary Glands ,Human ,Microtubule-Associated Proteins ,Mutation ,Nuclear Proteins ,Polymorphism ,Single Nucleotide ,Retrospective Studies ,Tubulin - Abstract
While interplay between BRCA1 and AURKA-RHAMM-TPX2-TUBG1 regulates mammary epithelial polarization, common genetic variation in HMMR (gene product RHAMM) may be associated with risk of breast cancer in BRCA1 mutation carriers. Following on these observations, we further assessed the link between the AURKA-HMMR-TPX2-TUBG1 functional module and risk of breast cancer in BRCA1 or BRCA2 mutation carriers. Forty-one single nucleotide polymorphisms (SNPs) were genotyped in 15,252 BRCA1 and 8,211 BRCA2 mutation carriers and subsequently analyzed using a retrospective likelihood approach. The association of HMMR rs299290 with breast cancer risk in BRCA1 mutation carriers was confirmed: per-allele hazard ratio (HR) = 1.10, 95% confidence interval (CI) 1.04-1.15, p = 1.9 x 10(-4) (false discovery rate (FDR)-adjusted p = 0.043). Variation in CSTF1, located next to AURKA, was also found to be associated with breast cancer risk in BRCA2 mutation carriers: rs2426618 per-allele HR = 1.10, 95% CI 1.03-1.16, p = 0.005 (FDR-adjusted p = 0.045). Assessment of pairwise interactions provided suggestions (FDR-adjusted pinteraction values > 0.05) for deviations from the multiplicative model for rs299290 and CSTF1 rs6064391, and rs299290 and TUBG1 rs11649877 in both BRCA1 and BRCA2 mutation carriers. Following these suggestions, the expression of HMMR and AURKA or TUBG1 in sporadic breast tumors was found to potentially interact, influencing patients survival. Together, the results of this study support the hypothesis of a causative link between altered function of AURKA-HMMR-TPX2-TUBG1 and breast carcinogenesis in BRCA1/2 mutation carriers.
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- 2015
31. HMG-coenzyme A reductase inhibition, type 2 diabetes, and bodyweight: evidence from genetic analysis and randomised trials
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Swerdlow, Daniel I, Preiss, David, Kuchenbaecker, Karoline B, Holmes, Michael V, Engmann, Jorgen EL, Shah, Tina, Sofat, Reecha, Stender, Stefan, Johnson, Paul CD, Scott, Robert A, Leusink, Maarten, Verweij, Niek, Sharp, Stephen J, Guo, Yiran, Giambartolomei, Claudia, Chung, Christina, Peasey, Anne, Amuzu, Antoinette, Li, KaWah, Palmen, Jutta, Howard, Philip, Cooper, Jackie A, Drenos, Fotios, Li, Yun R, Lowe, Gordon, Gallacher, John, Stewart, Marlene CW, Tzoulaki, Ioanna, Buxbaum, Sarah G, van der A, Daphne L, Forouhi, Nita G, Onland-Moret, N Charlotte, van der Schouw, Yvonne T, Schnabel, Renate B, Hubacek, Jaroslav A, Kubinova, Ruzena, Baceviciene, Migle, Tamosiunas, Abdonas, Pajak, Andrzej, Topor-Madry, Romanvan, Stepaniak, Urszula, Malyutina, Sofia, Baldassarre, Damiano, Sennblad, Bengt, Tremoli, Elena, de Faire, Ulf, Veglia, Fabrizio, Ford, Ian, Jukema, J Wouter, Westendorp, Rudi GJ, de Borst, Gert Jan, de Jong, Pim A, Algra, Ale, Spiering, Wilko, der Zee, Anke H Maitland-van, Klungel, Olaf H, de Boer, Anthonius, Doevendans, Pieter A, Eaton, Charles B, Robinson, Jennifer G, Duggan, David, DIAGRAM Consortium, MAGIC Consortium, Kjekshus, John, Downs, John R, Gotto, Antonio M, Keech, Anthony C, Marchioli, Roberto, Tognoni, Gianni, Sever, Peter S, Poulter, Neil R, Waters, David D, Pedersen, Terje R, Amarenco, Pierre, Nakamura, Haruo, McMurray, John JV, Lewsey, James D, Chasman, Daniel I, Ridker, Paul M, Maggioni, Aldo P, Tavazzi, Luigi, Ray, Kausik K, Seshasai, Sreenivasa Rao Kondapally, Manson, JoAnn E, Price, Jackie F, Whincup, Peter H, Morris, Richard W, Lawlor, Debbie A, Smith, George Davey, Ben-Shlomo, Yoav, Schreiner, Pamela J, Fornage, Myriam, Siscovick, David S, Cushman, Mary, Kumari, Meena, Wareham, Nick J, Verschuren, WM Monique, Redline, Susan, Patel, Sanjay R, Whittaker, John C, and Hamsten, Anders
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Epidemiology ,Biomedical and Clinical Sciences ,Health Sciences ,Clinical Trials and Supportive Activities ,Clinical Research ,Genetics ,Nutrition ,Diabetes ,6.1 Pharmaceuticals ,Evaluation of treatments and therapeutic interventions ,Metabolic and endocrine ,Aged ,Body Mass Index ,Body Weight ,Cholesterol ,HDL ,Cholesterol ,LDL ,Diabetes Mellitus ,Type 2 ,Female ,Genetic Testing ,Humans ,Hydroxymethylglutaryl CoA Reductases ,Hydroxymethylglutaryl-CoA Reductase Inhibitors ,Male ,Middle Aged ,Polymorphism ,Single Nucleotide ,Randomized Controlled Trials as Topic ,Risk Factors ,DIAGRAM Consortium ,MAGIC Consortium ,InterAct Consortium ,Medical and Health Sciences ,General & Internal Medicine ,Biomedical and clinical sciences ,Health sciences - Abstract
BackgroundStatins increase the risk of new-onset type 2 diabetes mellitus. We aimed to assess whether this increase in risk is a consequence of inhibition of 3-hydroxy-3-methylglutaryl-CoA reductase (HMGCR), the intended drug target.MethodsWe used single nucleotide polymorphisms in the HMGCR gene, rs17238484 (for the main analysis) and rs12916 (for a subsidiary analysis) as proxies for HMGCR inhibition by statins. We examined associations of these variants with plasma lipid, glucose, and insulin concentrations; bodyweight; waist circumference; and prevalent and incident type 2 diabetes. Study-specific effect estimates per copy of each LDL-lowering allele were pooled by meta-analysis. These findings were compared with a meta-analysis of new-onset type 2 diabetes and bodyweight change data from randomised trials of statin drugs. The effects of statins in each randomised trial were assessed using meta-analysis.FindingsData were available for up to 223 463 individuals from 43 genetic studies. Each additional rs17238484-G allele was associated with a mean 0·06 mmol/L (95% CI 0·05-0·07) lower LDL cholesterol and higher body weight (0·30 kg, 0·18-0·43), waist circumference (0·32 cm, 0·16-0·47), plasma insulin concentration (1·62%, 0·53-2·72), and plasma glucose concentration (0·23%, 0·02-0·44). The rs12916 SNP had similar effects on LDL cholesterol, bodyweight, and waist circumference. The rs17238484-G allele seemed to be associated with higher risk of type 2 diabetes (odds ratio [OR] per allele 1·02, 95% CI 1·00-1·05); the rs12916-T allele association was consistent (1·06, 1·03-1·09). In 129 170 individuals in randomised trials, statins lowered LDL cholesterol by 0·92 mmol/L (95% CI 0·18-1·67) at 1-year of follow-up, increased bodyweight by 0·24 kg (95% CI 0·10-0·38 in all trials; 0·33 kg, 95% CI 0·24-0·42 in placebo or standard care controlled trials and -0·15 kg, 95% CI -0·39 to 0·08 in intensive-dose vs moderate-dose trials) at a mean of 4·2 years (range 1·9-6·7) of follow-up, and increased the odds of new-onset type 2 diabetes (OR 1·12, 95% CI 1·06-1·18 in all trials; 1·11, 95% CI 1·03-1·20 in placebo or standard care controlled trials and 1·12, 95% CI 1·04-1·22 in intensive-dose vs moderate dose trials).InterpretationThe increased risk of type 2 diabetes noted with statins is at least partially explained by HMGCR inhibition.FundingThe funding sources are cited at the end of the paper.
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- 2015
32. Associations of common breast cancer susceptibility alleles with risk of breast cancer subtypes in BRCA1 and BRCA2 mutation carriers.
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Kuchenbaecker, Karoline B, Neuhausen, Susan L, Robson, Mark, Barrowdale, Daniel, McGuffog, Lesley, Mulligan, Anna Marie, Andrulis, Irene L, Spurdle, Amanda B, Schmidt, Marjanka K, Schmutzler, Rita K, Engel, Christoph, Wappenschmidt, Barbara, Nevanlinna, Heli, Thomassen, Mads, Southey, Melissa, Radice, Paolo, Ramus, Susan J, Domchek, Susan M, Nathanson, Katherine L, Lee, Andrew, Healey, Sue, Nussbaum, Robert L, Rebbeck, Timothy R, Arun, Banu K, James, Paul, Karlan, Beth Y, Lester, Jenny, Cass, Ilana, Breast Cancer Family Registry, Terry, Mary Beth, Daly, Mary B, Goldgar, David E, Buys, Saundra S, Janavicius, Ramunas, Tihomirova, Laima, Tung, Nadine, Dorfling, Cecilia M, van Rensburg, Elizabeth J, Steele, Linda, v O Hansen, Thomas, Ejlertsen, Bent, Gerdes, Anne-Marie, Nielsen, Finn C, Dennis, Joe, Cunningham, Julie, Hart, Steven, Slager, Susan, Osorio, Ana, Benitez, Javier, Duran, Mercedes, Weitzel, Jeffrey N, Tafur, Isaac, Hander, Mary, Peterlongo, Paolo, Manoukian, Siranoush, Peissel, Bernard, Roversi, Gaia, Scuvera, Giulietta, Bonanni, Bernardo, Mariani, Paolo, Volorio, Sara, Dolcetti, Riccardo, Varesco, Liliana, Papi, Laura, Tibiletti, Maria Grazia, Giannini, Giuseppe, Fostira, Florentia, Konstantopoulou, Irene, Garber, Judy, Hamann, Ute, Donaldson, Alan, Brewer, Carole, Foo, Claire, Evans, D Gareth, Frost, Debra, Eccles, Diana, EMBRACE Study, Douglas, Fiona, Brady, Angela, Cook, Jackie, Tischkowitz, Marc, Adlard, Julian, Barwell, Julian, Ong, Kai-ren, Walker, Lisa, Izatt, Louise, Side, Lucy E, Kennedy, M John, Rogers, Mark T, Porteous, Mary E, Morrison, Patrick J, Platte, Radka, Eeles, Ros, Davidson, Rosemarie, Hodgson, Shirley, Ellis, Steve, Godwin, Andrew K, Rhiem, Kerstin, Meindl, Alfons, and Ditsch, Nina
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Breast Cancer Family Registry ,EMBRACE Study ,GEMO Study Collaborators ,HEBON ,KConFab Investigators ,CIMBA ,Humans ,Carcinoma ,Carcinoma ,Ductal ,Breast ,Carcinoma ,Lobular ,Breast Neoplasms ,Genetic Predisposition to Disease ,Receptor ,erbB-2 ,Receptors ,Estrogen ,Receptors ,Progesterone ,Neoplasm Staging ,Heterozygote ,Alleles ,Genes ,BRCA1 ,Genes ,BRCA2 ,Adult ,Aged ,Middle Aged ,Female ,Neoplasm Grading ,Receptor ,ErbB-2 ,Ductal ,Breast ,Lobular ,Receptor ,erbB-2 ,Receptors ,Estrogen ,Progesterone ,Genes ,BRCA1 ,BRCA2 ,ErbB-2 ,Prevention ,Breast Cancer ,Clinical Research ,Genetics ,Cancer ,2.1 Biological and endogenous factors ,Oncology & Carcinogenesis ,Oncology and Carcinogenesis - Abstract
IntroductionMore than 70 common alleles are known to be involved in breast cancer (BC) susceptibility, and several exhibit significant heterogeneity in their associations with different BC subtypes. Although there are differences in the association patterns between BRCA1 and BRCA2 mutation carriers and the general population for several loci, no study has comprehensively evaluated the associations of all known BC susceptibility alleles with risk of BC subtypes in BRCA1 and BRCA2 carriers.MethodsWe used data from 15,252 BRCA1 and 8,211 BRCA2 carriers to analyze the associations between approximately 200,000 genetic variants on the iCOGS array and risk of BC subtypes defined by estrogen receptor (ER), progesterone receptor (PR), human epidermal growth factor receptor 2 (HER2) and triple-negative- (TN) status; morphologic subtypes; histological grade; and nodal involvement.ResultsThe estimated BC hazard ratios (HRs) for the 74 known BC alleles in BRCA1 carriers exhibited moderate correlations with the corresponding odds ratios from the general population. However, their associations with ER-positive BC in BRCA1 carriers were more consistent with the ER-positive associations in the general population (intraclass correlation (ICC) = 0.61, 95% confidence interval (CI): 0.45 to 0.74), and the same was true when considering ER-negative associations in both groups (ICC = 0.59, 95% CI: 0.42 to 0.72). Similarly, there was strong correlation between the ER-positive associations for BRCA1 and BRCA2 carriers (ICC = 0.67, 95% CI: 0.52 to 0.78), whereas ER-positive associations in any one of the groups were generally inconsistent with ER-negative associations in any of the others. After stratifying by ER status in mutation carriers, additional significant associations were observed. Several previously unreported variants exhibited associations at P
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- 2014
33. Association between alcohol and cardiovascular disease: Mendelian randomisation analysis based on individual participant data.
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Holmes, Michael V, Dale, Caroline E, Zuccolo, Luisa, Silverwood, Richard J, Guo, Yiran, Ye, Zheng, Prieto-Merino, David, Dehghan, Abbas, Trompet, Stella, Wong, Andrew, Cavadino, Alana, Drogan, Dagmar, Padmanabhan, Sandosh, Li, Shanshan, Yesupriya, Ajay, Leusink, Maarten, Sundstrom, Johan, Hubacek, Jaroslav A, Pikhart, Hynek, Swerdlow, Daniel I, Panayiotou, Andrie G, Borinskaya, Svetlana A, Finan, Chris, Shah, Sonia, Kuchenbaecker, Karoline B, Shah, Tina, Engmann, Jorgen, Folkersen, Lasse, Eriksson, Per, Ricceri, Fulvio, Melander, Olle, Sacerdote, Carlotta, Gamble, Dale M, Rayaprolu, Sruti, Ross, Owen A, McLachlan, Stela, Vikhireva, Olga, Sluijs, Ivonne, Scott, Robert A, Adamkova, Vera, Flicker, Leon, Bockxmeer, Frank M van, Power, Christine, Marques-Vidal, Pedro, Meade, Tom, Marmot, Michael G, Ferro, Jose M, Paulos-Pinheiro, Sofia, Humphries, Steve E, Talmud, Philippa J, Mateo Leach, Irene, Verweij, Niek, Linneberg, Allan, Skaaby, Tea, Doevendans, Pieter A, Cramer, Maarten J, van der Harst, Pim, Klungel, Olaf H, Dowling, Nicole F, Dominiczak, Anna F, Kumari, Meena, Nicolaides, Andrew N, Weikert, Cornelia, Boeing, Heiner, Ebrahim, Shah, Gaunt, Tom R, Price, Jackie F, Lannfelt, Lars, Peasey, Anne, Kubinova, Ruzena, Pajak, Andrzej, Malyutina, Sofia, Voevoda, Mikhail I, Tamosiunas, Abdonas, Maitland-van der Zee, Anke H, Norman, Paul E, Hankey, Graeme J, Bergmann, Manuela M, Hofman, Albert, Franco, Oscar H, Cooper, Jackie, Palmen, Jutta, Spiering, Wilko, de Jong, Pim A, Kuh, Diana, Hardy, Rebecca, Uitterlinden, Andre G, Ikram, M Arfan, Ford, Ian, Hyppönen, Elina, Almeida, Osvaldo P, Wareham, Nicholas J, Khaw, Kay-Tee, Hamsten, Anders, Husemoen, Lise Lotte N, Tjønneland, Anne, Tolstrup, Janne S, Rimm, Eric, Beulens, Joline WJ, and Verschuren, WM Monique
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InterAct Consortium ,Humans ,Coronary Disease ,Alcohol Dehydrogenase ,Genetic Markers ,Models ,Statistical ,Alcohol Drinking ,Genotype ,Polymorphism ,Single Nucleotide ,Adult ,Aged ,Middle Aged ,Female ,Male ,Stroke ,Mendelian Randomization Analysis ,Biomarkers ,General & Internal Medicine ,Clinical Sciences ,Public Health and Health Services - Abstract
ObjectiveTo use the rs1229984 variant in the alcohol dehydrogenase 1B gene (ADH1B) as an instrument to investigate the causal role of alcohol in cardiovascular disease.DesignMendelian randomisation meta-analysis of 56 epidemiological studies.Participants261 991 individuals of European descent, including 20 259 coronary heart disease cases and 10 164 stroke events. Data were available on ADH1B rs1229984 variant, alcohol phenotypes, and cardiovascular biomarkers.Main outcome measuresOdds ratio for coronary heart disease and stroke associated with the ADH1B variant in all individuals and by categories of alcohol consumption.ResultsCarriers of the A-allele of ADH1B rs1229984 consumed 17.2% fewer units of alcohol per week (95% confidence interval 15.6% to 18.9%), had a lower prevalence of binge drinking (odds ratio 0.78 (95% CI 0.73 to 0.84)), and had higher abstention (odds ratio 1.27 (1.21 to 1.34)) than non-carriers. Rs1229984 A-allele carriers had lower systolic blood pressure (-0.88 (-1.19 to -0.56) mm Hg), interleukin-6 levels (-5.2% (-7.8 to -2.4%)), waist circumference (-0.3 (-0.6 to -0.1) cm), and body mass index (-0.17 (-0.24 to -0.10) kg/m(2)). Rs1229984 A-allele carriers had lower odds of coronary heart disease (odds ratio 0.90 (0.84 to 0.96)). The protective association of the ADH1B rs1229984 A-allele variant remained the same across all categories of alcohol consumption (P=0.83 for heterogeneity). Although no association of rs1229984 was identified with the combined subtypes of stroke, carriers of the A-allele had lower odds of ischaemic stroke (odds ratio 0.83 (0.72 to 0.95)).ConclusionsIndividuals with a genetic variant associated with non-drinking and lower alcohol consumption had a more favourable cardiovascular profile and a reduced risk of coronary heart disease than those without the genetic variant. This suggests that reduction of alcohol consumption, even for light to moderate drinkers, is beneficial for cardiovascular health.
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- 2014
34. DNA glycosylases involved in base excision repair may be associated with cancer risk in BRCA1 and BRCA2 mutation carriers.
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Osorio, Ana, Milne, Roger L, Kuchenbaecker, Karoline, Vaclová, Tereza, Pita, Guillermo, Alonso, Rosario, Peterlongo, Paolo, Blanco, Ignacio, de la Hoya, Miguel, Duran, Mercedes, Díez, Orland, Ramón Y Cajal, Teresa, Konstantopoulou, Irene, Martínez-Bouzas, Cristina, Andrés Conejero, Raquel, Soucy, Penny, McGuffog, Lesley, Barrowdale, Daniel, Lee, Andrew, SWE-BRCA, Arver, Brita, Rantala, Johanna, Loman, Niklas, Ehrencrona, Hans, Olopade, Olufunmilayo I, Beattie, Mary S, Domchek, Susan M, Nathanson, Katherine, Rebbeck, Timothy R, Arun, Banu K, Karlan, Beth Y, Walsh, Christine, Lester, Jenny, John, Esther M, Whittemore, Alice S, Daly, Mary B, Southey, Melissa, Hopper, John, Terry, Mary B, Buys, Saundra S, Janavicius, Ramunas, Dorfling, Cecilia M, van Rensburg, Elizabeth J, Steele, Linda, Neuhausen, Susan L, Ding, Yuan Chun, Hansen, Thomas VO, Jønson, Lars, Ejlertsen, Bent, Gerdes, Anne-Marie, Infante, Mar, Herráez, Belén, Moreno, Leticia Thais, Weitzel, Jeffrey N, Herzog, Josef, Weeman, Kisa, Manoukian, Siranoush, Peissel, Bernard, Zaffaroni, Daniela, Scuvera, Giulietta, Bonanni, Bernardo, Mariette, Frederique, Volorio, Sara, Viel, Alessandra, Varesco, Liliana, Papi, Laura, Ottini, Laura, Tibiletti, Maria Grazia, Radice, Paolo, Yannoukakos, Drakoulis, Garber, Judy, Ellis, Steve, Frost, Debra, Platte, Radka, Fineberg, Elena, Evans, Gareth, Lalloo, Fiona, Izatt, Louise, Eeles, Ros, Adlard, Julian, Davidson, Rosemarie, Cole, Trevor, Eccles, Diana, Cook, Jackie, Hodgson, Shirley, Brewer, Carole, Tischkowitz, Marc, Douglas, Fiona, Porteous, Mary, Side, Lucy, Walker, Lisa, Morrison, Patrick, Donaldson, Alan, Kennedy, John, Foo, Claire, Godwin, Andrew K, Schmutzler, Rita Katharina, Wappenschmidt, Barbara, Rhiem, Kerstin, and Engel, Christoph
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SWE-BRCA ,HEBON ,KConFab Investigators ,Humans ,Breast Neoplasms ,Ovarian Neoplasms ,Genetic Predisposition to Disease ,DNA Glycosylases ,BRCA1 Protein ,BRCA2 Protein ,Risk ,DNA Repair ,Genotype ,Polymorphism ,Single Nucleotide ,Adolescent ,Adult ,Aged ,Aged ,80 and over ,Middle Aged ,Female ,Polymorphism ,Single Nucleotide ,and over ,Developmental Biology ,Genetics - Abstract
Single Nucleotide Polymorphisms (SNPs) in genes involved in the DNA Base Excision Repair (BER) pathway could be associated with cancer risk in carriers of mutations in the high-penetrance susceptibility genes BRCA1 and BRCA2, given the relation of synthetic lethality that exists between one of the components of the BER pathway, PARP1 (poly ADP ribose polymerase), and both BRCA1 and BRCA2. In the present study, we have performed a comprehensive analysis of 18 genes involved in BER using a tagging SNP approach in a large series of BRCA1 and BRCA2 mutation carriers. 144 SNPs were analyzed in a two stage study involving 23,463 carriers from the CIMBA consortium (the Consortium of Investigators of Modifiers of BRCA1 and BRCA2). Eleven SNPs showed evidence of association with breast and/or ovarian cancer at p
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- 2014
35. Is auditory processing measured by the N100 an endophenotype for psychosis? A family study and a meta-analysis
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Wang, Baihan, primary, Otten, Leun J., additional, Schulze, Katja, additional, Afrah, Hana, additional, Varney, Lauren, additional, Cotic, Marius, additional, Saadullah Khani, Noushin, additional, Linden, Jennifer F., additional, Kuchenbaecker, Karoline, additional, McQuillin, Andrew, additional, Hall, Mei-Hua, additional, and Bramon, Elvira, additional
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- 2023
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36. W28. POLYGENIC PREDICTION OF MAJOR DEPRESSIVE DISORDER AND RELATED TRAITS IN PEOPLE OF AFRICAN ANCESTRY FROM EUROPEAN GENETIC ASSOCIATION DATASETS
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Kanjira, Susan, primary, Adams, Mark, additional, McIntosh, Andrew, additional, and Kuchenbaecker, Karoline, additional
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- 2023
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37. W86. ASSESSMENT OF PHARMACOGENETIC ANALYSIS TECHNOLOGIES APPLIED IN THE G-PAT STUDY: MULTI-MODAL CHARACTERIZATION OF KEY PHARMACOGENES IN THE CONTEXT OF PSYCHOSIS
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Cotic, Marius, primary, Khani, Noushin Saadullah, additional, Varney, Lauren, additional, Abidoph, Rosemary, additional, Manavale, Craig, additional, Panconesi, Daniele, additional, Richards-Belle, Alvin, additional, Ramesh, Soumita, additional, Kuchenbaecker, Karoline, additional, Kristiansen, Mark, additional, and Bramon, Elvira, additional
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- 2023
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38. 17. ANCESTRY-AWARE MIXED MODEL GWAS OF MAJOR DEPRESSION CHARTS A PATH FOR INCLUSIVE AND DIVERSE GENETIC RESEARCH
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Meng, Xiangrui, primary, Giannakopoulou, Olga, additional, Navoly, Georgina, additional, Levey, Daniel, additional, Mitchell, Brittany, additional, Oliveira, Adrielle M, additional, Martin, Nicholas G, additional, Salum, Giovanni, additional, Stein, Murray B, additional, Gelernter, Joel, additional, Belangero, Sintia, additional, Ota, Vanessa, additional, McIntosh, Andrew, additional, Lewis, Cathryn, additional, and Kuchenbaecker, Karoline, additional
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- 2023
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39. Prevalence and correlates of common mental disorders among participants of the Uganda Genome Resource: Opportunities for psychiatric genetics research
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Kalungi, Allan, primary, Kinyanda, Eugene, additional, Akena, Dickens, additional, Gelaye, Bizu, additional, Ssembajjwe, Wilber, additional, Mpango, Richard, additional, Ongaria, Terry, additional, Mugisha, Joseph, additional, Makanga, Ronald, additional, Kakande, Ayoub, additional, Kimono, Beatrice, additional, Amanyire, Philip, additional, Kirumira, Fred, additional, Lewis, Cathryn, additional, McIntosh, Andrew, additional, Kuchenbaecker, Karoline, additional, Nyirenda, Moffat, additional, Kaleebu, Pontiano, additional, and Fatumo, Segun, additional
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- 2023
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40. Integrating polygenic risk scores in the prediction of type 2 diabetes risk and subtypes in British Pakistanis and Bangladeshis: A population-based cohort study
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Hodgson, Sam, Huang, Qin Qin, Sallah, Neneh, Griffiths, Chris J., Newman, William G., Trembath, Richard C., Wright, John, Lumbers, R. Thomas, Kuchenbaecker, Karoline, van Heel, David A., Mathur, Rohini, Martin, Hilary C., and Finer, Sarah
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Bangladeshis -- Health aspects -- Genetic aspects ,Pakistanis -- Health aspects -- Genetic aspects ,Type 2 diabetes -- Risk factors -- Genetic aspects ,Biological sciences - Abstract
Background Type 2 diabetes (T2D) is highly prevalent in British South Asians, yet they are underrepresented in research. Genes & Health (G&H) is a large, population study of British Pakistanis and Bangladeshis (BPB) comprising genomic and routine health data. We assessed the extent to which genetic risk for T2D is shared between BPB and European populations (EUR). We then investigated whether the integration of a polygenic risk score (PRS) for T2D with an existing risk tool (QDiabetes) could improve prediction of incident disease and the characterisation of disease subtypes. Methods and findings In this observational cohort study, we assessed whether common genetic loci associated with T2D in EUR individuals were replicated in 22,490 BPB individuals in G&H. We replicated fewer loci in G&H (n = 76/338, 22%) than would be expected given power if all EUR-ascertained loci were transferable (n = 101, 30%; p = 0.001). Of the 27 transferable loci that were powered to interrogate this, only 9 showed evidence of shared causal variants. We constructed a T2D PRS and combined it with a clinical risk instrument (QDiabetes) in a novel, integrated risk tool (IRT) to assess risk of incident diabetes. To assess model performance, we compared categorical net reclassification index (NRI) versus QDiabetes alone. In 13,648 patients free from T2D followed up for 10 years, NRI was 3.2% for IRT versus QDiabetes (95% confidence interval (CI): 2.0% to 4.4%). IRT performed best in reclassification of individuals aged less than 40 years deemed low risk by QDiabetes alone (NRI 5.6%, 95% CI 3.6% to 7.6%), who tended to be free from comorbidities and slim. After adjustment for QDiabetes score, PRS was independently associated with progression to T2D after gestational diabetes (hazard ratio (HR) per SD of PRS 1.23, 95% CI 1.05 to 1.42, p = 0.028). Using cluster analysis of clinical features at diabetes diagnosis, we replicated previously reported disease subgroups, including Mild Age-Related, Mild Obesity-related, and Insulin-Resistant Diabetes, and showed that PRS distribution differs between subgroups (p = 0.002). Integrating PRS in this cluster analysis revealed a Probable Severe Insulin Deficient Diabetes (pSIDD) subgroup, despite the absence of clinical measures of insulin secretion or resistance. We also observed differences in rates of progression to micro- and macrovascular complications between subgroups after adjustment for confounders. Study limitations include the absence of an external replication cohort and the potential biases arising from missing or incorrect routine health data. Conclusions Our analysis of the transferability of T2D loci between EUR and BPB indicates the need for larger, multiancestry studies to better characterise the genetic contribution to disease and its varied aetiology. We show that a T2D PRS optimised for this high-risk BPB population has potential clinical application in BPB, improving the identification of T2D risk (especially in the young) on top of an established clinical risk algorithm and aiding identification of subgroups at diagnosis, which may help future efforts to stratify care and treatment of the disease., Author(s): Sam Hodgson 1, Qin Qin Huang 2, Neneh Sallah 3,4, Genes & Health Research Team 5,6, Chris J. Griffiths 5, William G. Newman 7,8, Richard C. Trembath 9, John [...]
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- 2022
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41. Genome-wide association study in BRCA1 mutation carriers identifies novel loci associated with breast and ovarian cancer risk.
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Couch, Fergus J, Wang, Xianshu, McGuffog, Lesley, Lee, Andrew, Olswold, Curtis, Kuchenbaecker, Karoline B, Soucy, Penny, Fredericksen, Zachary, Barrowdale, Daniel, Dennis, Joe, Gaudet, Mia M, Dicks, Ed, Kosel, Matthew, Healey, Sue, Sinilnikova, Olga M, Lee, Adam, Bacot, François, Vincent, Daniel, Hogervorst, Frans BL, Peock, Susan, Stoppa-Lyonnet, Dominique, Jakubowska, Anna, kConFab Investigators, Radice, Paolo, Schmutzler, Rita Katharina, SWE-BRCA, Domchek, Susan M, Piedmonte, Marion, Singer, Christian F, Friedman, Eitan, Thomassen, Mads, Ontario Cancer Genetics Network, Hansen, Thomas VO, Neuhausen, Susan L, Szabo, Csilla I, Blanco, Ignacio, Greene, Mark H, Karlan, Beth Y, Garber, Judy, Phelan, Catherine M, Weitzel, Jeffrey N, Montagna, Marco, Olah, Edith, Andrulis, Irene L, Godwin, Andrew K, Yannoukakos, Drakoulis, Goldgar, David E, Caldes, Trinidad, Nevanlinna, Heli, Osorio, Ana, Terry, Mary Beth, Daly, Mary B, van Rensburg, Elizabeth J, Hamann, Ute, Ramus, Susan J, Toland, Amanda Ewart, Caligo, Maria A, Olopade, Olufunmilayo I, Tung, Nadine, Claes, Kathleen, Beattie, Mary S, Southey, Melissa C, Imyanitov, Evgeny N, Tischkowitz, Marc, Janavicius, Ramunas, John, Esther M, Kwong, Ava, Diez, Orland, Balmaña, Judith, Barkardottir, Rosa B, Arun, Banu K, Rennert, Gad, Teo, Soo-Hwang, Ganz, Patricia A, Campbell, Ian, van der Hout, Annemarie H, van Deurzen, Carolien HM, Seynaeve, Caroline, Gómez Garcia, Encarna B, van Leeuwen, Flora E, Meijers-Heijboer, Hanne EJ, Gille, Johannes JP, Ausems, Margreet GEM, Blok, Marinus J, Ligtenberg, Marjolijn JL, Rookus, Matti A, Devilee, Peter, Verhoef, Senno, van Os, Theo AM, Wijnen, Juul T, HEBON, EMBRACE, Frost, Debra, Ellis, Steve, Fineberg, Elena, Platte, Radka, Evans, D Gareth, Izatt, Louise, Eeles, Rosalind A, and Adlard, Julian
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kConFab Investigators ,SWE-BRCA ,Ontario Cancer Genetics Network ,HEBON ,EMBRACE ,GEMO Study Collaborators ,BCFR ,CIMBA ,Humans ,Breast Neoplasms ,Ovarian Neoplasms ,Genetic Predisposition to Disease ,BRCA1 Protein ,BRCA2 Protein ,Prognosis ,Risk Factors ,Genotype ,Heterozygote ,Mutation ,Polymorphism ,Single Nucleotide ,Middle Aged ,Female ,Genome-Wide Association Study ,Polymorphism ,Single Nucleotide ,Developmental Biology ,Genetics - Abstract
BRCA1-associated breast and ovarian cancer risks can be modified by common genetic variants. To identify further cancer risk-modifying loci, we performed a multi-stage GWAS of 11,705 BRCA1 carriers (of whom 5,920 were diagnosed with breast and 1,839 were diagnosed with ovarian cancer), with a further replication in an additional sample of 2,646 BRCA1 carriers. We identified a novel breast cancer risk modifier locus at 1q32 for BRCA1 carriers (rs2290854, P = 2.7 × 10(-8), HR = 1.14, 95% CI: 1.09-1.20). In addition, we identified two novel ovarian cancer risk modifier loci: 17q21.31 (rs17631303, P = 1.4 × 10(-8), HR = 1.27, 95% CI: 1.17-1.38) and 4q32.3 (rs4691139, P = 3.4 × 10(-8), HR = 1.20, 95% CI: 1.17-1.38). The 4q32.3 locus was not associated with ovarian cancer risk in the general population or BRCA2 carriers, suggesting a BRCA1-specific association. The 17q21.31 locus was also associated with ovarian cancer risk in 8,211 BRCA2 carriers (P = 2×10(-4)). These loci may lead to an improved understanding of the etiology of breast and ovarian tumors in BRCA1 carriers. Based on the joint distribution of the known BRCA1 breast cancer risk-modifying loci, we estimated that the breast cancer lifetime risks for the 5% of BRCA1 carriers at lowest risk are 28%-50% compared to 81%-100% for the 5% at highest risk. Similarly, based on the known ovarian cancer risk-modifying loci, the 5% of BRCA1 carriers at lowest risk have an estimated lifetime risk of developing ovarian cancer of 28% or lower, whereas the 5% at highest risk will have a risk of 63% or higher. Such differences in risk may have important implications for risk prediction and clinical management for BRCA1 carriers.
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- 2013
42. Common variants at 12p11, 12q24, 9p21, 9q31.2 and in ZNF365 are associated with breast cancer risk for BRCA1 and/or BRCA2 mutation carriers
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Antoniou, Antonis C, Kuchenbaecker, Karoline B, Soucy, Penny, Beesley, Jonathan, Chen, Xiaoqing, McGuffog, Lesley, Lee, Andrew, Barrowdale, Daniel, Healey, Sue, Sinilnikova, Olga M, Caligo, Maria A, Loman, Niklas, Harbst, Katja, Lindblom, Annika, Arver, Brita, Rosenquist, Richard, Karlsson, Per, Nathanson, Kate, Domchek, Susan, Rebbeck, Tim, Jakubowska, Anna, Lubinski, Jan, Jaworska, Katarzyna, Durda, Katarzyna, Złowowcka-Perłowska, Elżbieta, Osorio, Ana, Durán, Mercedes, Andrés, Raquel, Benítez, Javier, Hamann, Ute, Hogervorst, Frans B, van Os, Theo A, Verhoef, Senno, Meijers-Heijboer, Hanne EJ, Wijnen, Juul, Gómez Garcia, Encarna B, Ligtenberg, Marjolijn J, Kriege, Mieke, Collée, J Margriet, Ausems, Margreet GEM, Oosterwijk, Jan C, Peock, Susan, Frost, Debra, Ellis, Steve D, Platte, Radka, Fineberg, Elena, Evans, D Gareth, Lalloo, Fiona, Jacobs, Chris, Eeles, Ros, Adlard, Julian, Davidson, Rosemarie, Cole, Trevor, Cook, Jackie, Paterson, Joan, Douglas, Fiona, Brewer, Carole, Hodgson, Shirley, Morrison, Patrick J, Walker, Lisa, Rogers, Mark T, Donaldson, Alan, Dorkins, Huw, Godwin, Andrew K, Bove, Betsy, Stoppa-Lyonnet, Dominique, Houdayer, Claude, Buecher, Bruno, de Pauw, Antoine, Mazoyer, Sylvie, Calender, Alain, Léoné, Mélanie, Bressac- de Paillerets, Brigitte, Caron, Olivier, Sobol, Hagay, Frenay, Marc, Prieur, Fabienne, Ferrer, Sandra, Mortemousque, Isabelle, Buys, Saundra, Daly, Mary, Miron, Alexander, Terry, Mary, Hopper, John L, John, Esther M, Southey, Melissa, Goldgar, David, Singer, Christian F, Fink-Retter, Anneliese, Tea, Muy-Kheng, Kaulich, Daphne, Hansen, Thomas VO, Nielsen, Finn C, Barkardottir, Rosa B, Gaudet, Mia, Kirchhoff, Tomas, Joseph, Vijai, Dutra-Clarke, Ana, Offit, Kenneth, and Piedmonte, Marion
- Abstract
AbstractIntroductionSeveral common alleles have been shown to be associated with breast and/or ovarian cancer risk for BRCA1 and BRCA2 mutation carriers. Recent genome-wide association studies of breast cancer have identified eight additional breast cancer susceptibility loci: rs1011970 (9p21, CDKN2A/B), rs10995190 (ZNF365), rs704010 (ZMIZ1), rs2380205 (10p15), rs614367 (11q13), rs1292011 (12q24), rs10771399 (12p11 near PTHLH) and rs865686 (9q31.2). MethodsTo evaluate whether these single nucleotide polymorphisms (SNPs) are associated with breast cancer risk for BRCA1 and BRCA2 carriers, we genotyped these SNPs in 12599 BRCA1 and 7132 BRCA2 mutation carriers and analysed the associations with breast cancer risk within a retrospective likelihood framework. ResultsOnly SNP rs10771399 near PTHLH was associated with breast cancer risk for BRCA1 mutation carriers (per-allele Hazard Ratio (HR)= 0.87, 95%CI:0.81-0.94, P-trend=3x10^-4). The association was restricted to mutations proven or predicted to lead to absence of protein expression (HR=0.82, 95%CI:0.74-0.90, P-trend=3.1x10^-5, P-difference=0.03). Four SNPs were associated with the risk of breast cancer for BRCA2 mutation carriers: rs10995190, P-trend=0.015; rs1011970, P-trend=0.048; rs865686, 2df-P=0.007; rs1292011 2df-P=0.03. rs10771399 (PTHLH) was predominantly associated with estrogen receptor (ER)-negative breast cancer for BRCA1 mutation carriers (HR=0.81, 95%CI: 0.74-0.90, P-trend=4x10^-5) and there was marginal evidence of association with ER-negative breast cancer for BRCA2 mutation carriers (HR=0.78, 95%CI:0.62-1.00, P-trend=0.049). ConclusionsThe present findings, in combination with previously identified modifiers of risk, will ultimately lead to more accurate risk prediction and an improved understanding of the disease etiology in BRCA1 and BRCA2 mutation carriers.
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- 2012
43. Comparing the effect profile of cholesteryl ester transfer protein (CETP) in individuals of East Asian and European ancestries
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Dunca, Diana, primary, Chopade, Sandesh, additional, Gordillo-Maranon, Maria, additional, Hingorani, Aroon, additional, Kuchenbaecker, Karoline, additional, Finan, Chris, additional, and Schmidt, Amand, additional
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- 2023
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44. Aggregation tests identify new gene associations with breast cancer in populations with diverse ancestry
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Mueller, Stefanie H, Lai, Alvina G, Valkovskaya, Maria, Michailidou, Kyriaki, Bolla, Manjeet K, Wang, Qin, Dennis, Joe, Lush, Michael, Abu-Ful, Zomoruda, Ahearn, Thomas U, Andrulis, Irene L, Anton-Culver, Hoda, Antonenkova, Natalia N, Arndt, Volker, Aronson, Kristan J, Augustinsson, Annelie, Baert, Thais, Freeman, Laura E Beane, Beckmann, Matthias W, Behrens, Sabine, Benitez, Javier, Bermisheva, Marina, Blomqvist, Carl, Bogdanova, Natalia V, Bojesen, Stig E, Bonanni, Bernardo, Brenner, Hermann, Brucker, Sara Y, Buys, Saundra S, Castelao, Jose E, Chan, Tsun L, Chang-Claude, Jenny, Chanock, Stephen J, Choi, Ji-Yeob, Chung, Wendy K, NBCS Collaborators, Colonna, Sarah V, CTS Consortium, Cornelissen, Sten, Couch, Fergus J, Czene, Kamila, Daly, Mary B, Devilee, Peter, Dörk, Thilo, Dossus, Laure, Dwek, Miriam, Eccles, Diana M, Ekici, Arif B, Eliassen, A Heather, Engel, Christoph, Evans, D Gareth, Fasching, Peter A, Fletcher, Olivia, Flyger, Henrik, Gago-Dominguez, Manuela, Gao, Yu-Tang, García-Closas, Montserrat, García-Sáenz, José A, Genkinger, Jeanine, Gentry-Maharaj, Aleksandra, Grassmann, Felix, Guénel, Pascal, Gündert, Melanie, Haeberle, Lothar, Hahnen, Eric, Haiman, Christopher A, Håkansson, Niclas, Hall, Per, Harkness, Elaine F, Harrington, Patricia A, Hartikainen, Jaana M, Hartman, Mikael, Hein, Alexander, Ho, Weang-Kee, Hooning, Maartje J, Hoppe, Reiner, Hopper, John L, Houlston, Richard S, Howell, Anthony, Hunter, David J, Huo, Dezheng, ABCTB Investigators, Ito, Hidemi, Iwasaki, Motoki, Jakubowska, Anna, Janni, Wolfgang, John, Esther M, Jones, Michael E, Jung, Audrey, Kaaks, Rudolf, Kang, Daehee, Khusnutdinova, Elza K, Kim, Sung-Won, Kitahara, Cari M, Koutros, Stella, Kraft, Peter, Kristensen, Vessela N, Kubelka-Sabit, Katerina, Kurian, Allison W, Kwong, Ava, Lacey, James V, Lambrechts, Diether, Le Marchand, Loic, Li, Jingmei, Linet, Martha, Lo, Wing-Yee, Long, Jirong, Lophatananon, Artitaya, Mannermaa, Arto, Manoochehri, Mehdi, Margolin, Sara, Matsuo, Keitaro, Mavroudis, Dimitrios, Menon, Usha, Muir, Kenneth, Murphy, Rachel A, Nevanlinna, Heli, Newman, William G, Niederacher, Dieter, O'Brien, Katie M, Obi, Nadia, Offit, Kenneth, Olopade, Olufunmilayo I, Olshan, Andrew F, Olsson, Håkan, Park, Sue K, Patel, Alpa V, Patel, Achal, Perou, Charles M, Peto, Julian, Pharoah, Paul DP, Plaseska-Karanfilska, Dijana, Presneau, Nadege, Rack, Brigitte, Radice, Paolo, Ramachandran, Dhanya, Rashid, Muhammad U, Rennert, Gad, Romero, Atocha, Ruddy, Kathryn J, Ruebner, Matthias, Saloustros, Emmanouil, Sandler, Dale P, Sawyer, Elinor J, Schmidt, Marjanka K, Schmutzler, Rita K, Schneider, Michael O, Scott, Christopher, Shah, Mitul, Sharma, Priyanka, Shen, Chen-Yang, Shu, Xiao-Ou, Simard, Jacques, Surowy, Harald, Tamimi, Rulla M, Tapper, William J, Taylor, Jack A, Teo, Soo Hwang, Teras, Lauren R, Toland, Amanda E, Tollenaar, Rob AEM, Torres, Diana, Torres-Mejía, Gabriela, Troester, Melissa A, Truong, Thérèse, Vachon, Celine M, Vijai, Joseph, Weinberg, Clarice R, Wendt, Camilla, Winqvist, Robert, Wolk, Alicja, Wu, Anna H, Yamaji, Taiki, Yang, Xiaohong R, Yu, Jyh-Cherng, Zheng, Wei, Ziogas, Argyrios, Ziv, Elad, Dunning, Alison M, Easton, Douglas F, Hemingway, Harry, Hamann, Ute, Kuchenbaecker, Karoline B, Kuchenbaecker, Karoline B [0000-0001-9726-603X], and Apollo - University of Cambridge Repository
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Genome-wide association study ,Breast cancer susceptibility ,Diverse ancestry ,Humans ,Black People ,Formins ,Female ,Genetic Predisposition to Disease ,Rare variants ,Breast Neoplasms ,Genetic Testing ,Polymorphism, Single Nucleotide ,Gene regulation - Abstract
BACKGROUND: Low-frequency variants play an important role in breast cancer (BC) susceptibility. Gene-based methods can increase power by combining multiple variants in the same gene and help identify target genes. METHODS: We evaluated the potential of gene-based aggregation in the Breast Cancer Association Consortium cohorts including 83,471 cases and 59,199 controls. Low-frequency variants were aggregated for individual genes' coding and regulatory regions. Association results in European ancestry samples were compared to single-marker association results in the same cohort. Gene-based associations were also combined in meta-analysis across individuals with European, Asian, African, and Latin American and Hispanic ancestry. RESULTS: In European ancestry samples, 14 genes were significantly associated (q < 0.05) with BC. Of those, two genes, FMNL3 (P = 6.11 × 10-6) and AC058822.1 (P = 1.47 × 10-4), represent new associations. High FMNL3 expression has previously been linked to poor prognosis in several other cancers. Meta-analysis of samples with diverse ancestry discovered further associations including established candidate genes ESR1 and CBLB. Furthermore, literature review and database query found further support for a biologically plausible link with cancer for genes CBLB, FMNL3, FGFR2, LSP1, MAP3K1, and SRGAP2C. CONCLUSIONS: Using extended gene-based aggregation tests including coding and regulatory variation, we report identification of plausible target genes for previously identified single-marker associations with BC as well as the discovery of novel genes implicated in BC development. Including multi ancestral cohorts in this study enabled the identification of otherwise missed disease associations as ESR1 (P = 1.31 × 10-5), demonstrating the importance of diversifying study cohorts.
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- 2023
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45. Supplementary Methods and Tables from The OncoArray Consortium: A Network for Understanding the Genetic Architecture of Common Cancers
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Amos, Christopher I., primary, Dennis, Joe, primary, Wang, Zhaoming, primary, Byun, Jinyoung, primary, Schumacher, Fredrick R., primary, Gayther, Simon A., primary, Casey, Graham, primary, Hunter, David J., primary, Sellers, Thomas A., primary, Gruber, Stephen B., primary, Dunning, Alison M., primary, Michailidou, Kyriaki, primary, Fachal, Laura, primary, Doheny, Kimberly, primary, Spurdle, Amanda B., primary, Li, Yafang, primary, Xiao, Xiangjun, primary, Romm, Jane, primary, Pugh, Elizabeth, primary, Coetzee, Gerhard A., primary, Hazelett, Dennis J., primary, Bojesen, Stig E., primary, Caga-Anan, Charlisse, primary, Haiman, Christopher A., primary, Kamal, Ahsan, primary, Luccarini, Craig, primary, Tessier, Daniel, primary, Vincent, Daniel, primary, Bacot, François, primary, Van Den Berg, David J., primary, Nelson, Stefanie, primary, Demetriades, Stephen, primary, Goldgar, David E., primary, Couch, Fergus J., primary, Forman, Judith L., primary, Giles, Graham G., primary, Conti, David V., primary, Bickeböller, Heike, primary, Risch, Angela, primary, Waldenberger, Melanie, primary, Brüske-Hohlfeld, Irene, primary, Hicks, Belynda D., primary, Ling, Hua, primary, McGuffog, Lesley, primary, Lee, Andrew, primary, Kuchenbaecker, Karoline, primary, Soucy, Penny, primary, Manz, Judith, primary, Cunningham, Julie M., primary, Butterbach, Katja, primary, Kote-Jarai, Zsofia, primary, Kraft, Peter, primary, FitzGerald, Liesel, primary, Lindström, Sara, primary, Adams, Marcia, primary, McKay, James D., primary, Phelan, Catherine M., primary, Benlloch, Sara, primary, Kelemen, Linda E., primary, Brennan, Paul, primary, Riggan, Marjorie, primary, O'Mara, Tracy A., primary, Shen, Hongbing, primary, Shi, Yongyong, primary, Thompson, Deborah J., primary, Goodman, Marc T., primary, Nielsen, Sune F., primary, Berchuck, Andrew, primary, Laboissiere, Sylvie, primary, Schmit, Stephanie L., primary, Shelford, Tameka, primary, Edlund, Christopher K., primary, Taylor, Jack A., primary, Field, John K., primary, Park, Sue K., primary, Offit, Kenneth, primary, Thomassen, Mads, primary, Schmutzler, Rita, primary, Ottini, Laura, primary, Hung, Rayjean J., primary, Marchini, Jonathan, primary, Amin Al Olama, Ali, primary, Peters, Ulrike, primary, Eeles, Rosalind A., primary, Seldin, Michael F., primary, Gillanders, Elizabeth, primary, Seminara, Daniela, primary, Antoniou, Antonis C., primary, Pharoah, Paul D.P., primary, Chenevix-Trench, Georgia, primary, Chanock, Stephen J., primary, Simard, Jacques, primary, and Easton, Douglas F., primary
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- 2023
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46. Supplementary Table 2 from Candidate Genetic Modifiers for Breast and Ovarian Cancer Risk in BRCA1 and BRCA2 Mutation Carriers
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Peterlongo, Paolo, primary, Chang-Claude, Jenny, primary, Moysich, Kirsten B., primary, Rudolph, Anja, primary, Schmutzler, Rita K., primary, Simard, Jacques, primary, Soucy, Penny, primary, Eeles, Rosalind A., primary, Easton, Douglas F., primary, Hamann, Ute, primary, Wilkening, Stefan, primary, Chen, Bowang, primary, Rookus, Matti A., primary, Schmidt, Marjanka K., primary, van der Baan, Frederieke H., primary, Spurdle, Amanda B., primary, Walker, Logan C., primary, Lose, Felicity, primary, Maia, Ana-Teresa, primary, Montagna, Marco, primary, Matricardi, Laura, primary, Lubinski, Jan, primary, Jakubowska, Anna, primary, Gómez Garcia, Encarna B., primary, Olopade, Olufunmilayo I., primary, Nussbaum, Robert L., primary, Nathanson, Katherine L., primary, Domchek, Susan M., primary, Rebbeck, Timothy R., primary, Arun, Banu K., primary, Karlan, Beth Y., primary, Orsulic, Sandra, primary, Lester, Jenny, primary, Chung, Wendy K., primary, Miron, Alex, primary, Southey, Melissa C., primary, Goldgar, David E., primary, Buys, Saundra S., primary, Janavicius, Ramunas, primary, Dorfling, Cecilia M., primary, van Rensburg, Elizabeth J., primary, Ding, Yuan Chun, primary, Neuhausen, Susan L., primary, Hansen, Thomas V.O., primary, Gerdes, Anne-Marie, primary, Ejlertsen, Bent, primary, Jønson, Lars, primary, Osorio, Ana, primary, Martínez-Bouzas, Cristina, primary, Benitez, Javier, primary, Conway, Edye E., primary, Blazer, Kathleen R., primary, Weitzel, Jeffrey N., primary, Manoukian, Siranoush, primary, Peissel, Bernard, primary, Zaffaroni, Daniela, primary, Scuvera, Giulietta, primary, Barile, Monica, primary, Ficarazzi, Filomena, primary, Mariette, Frederique, primary, Fortuzzi, Stefano, primary, Viel, Alessandra, primary, Giannini, Giuseppe, primary, Papi, Laura, primary, Martayan, Aline, primary, Tibiletti, Maria Grazia, primary, Radice, Paolo, primary, Vratimos, Athanassios, primary, Fostira, Florentia, primary, Garber, Judy E., primary, Donaldson, Alan, primary, Brewer, Carole, primary, Foo, Claire, primary, Evans, D. Gareth R., primary, Frost, Debra, primary, Eccles, Diana, primary, Brady, Angela, primary, Cook, Jackie, primary, Tischkowitz, Marc, primary, Adlard, Julian, primary, Barwell, Julian, primary, Walker, Lisa, primary, Izatt, Louise, primary, Side, Lucy E., primary, Kennedy, M. John, primary, Rogers, Mark T., primary, Porteous, Mary E., primary, Morrison, Patrick J., primary, Platte, Radka, primary, Davidson, Rosemarie, primary, Hodgson, Shirley V., primary, Ellis, Steve, primary, Cole, Trevor, primary, Godwin, Andrew K., primary, Claes, Kathleen, primary, Van Maerken, Tom, primary, Meindl, Alfons, primary, Gehrig, Andrea, primary, Sutter, Christian, primary, Engel, Christoph, primary, Niederacher, Dieter, primary, Steinemann, Doris, primary, Plendl, Hansjoerg, primary, Kast, Karin, primary, Rhiem, Kerstin, primary, Ditsch, Nina, primary, Arnold, Norbert, primary, Varon-Mateeva, Raymonda, primary, Wappenschmidt, Barbara, primary, Wang-Gohrke, Shan, primary, Bressac-de Paillerets, Brigitte, primary, Buecher, Bruno, primary, Delnatte, Capucine, primary, Houdayer, Claude, primary, Stoppa-Lyonnet, Dominique, primary, Damiola, Francesca, primary, Coupier, Isabelle, primary, Barjhoux, Laure, primary, Venat-Bouvet, Laurence, primary, Golmard, Lisa, primary, Boutry-Kryza, Nadia, primary, Sinilnikova, Olga M., primary, Caron, Olivier, primary, Pujol, Pascal, primary, Mazoyer, Sylvie, primary, Belotti, Muriel, primary, Piedmonte, Marion, primary, Friedlander, Michael L., primary, Rodriguez, Gustavo C., primary, Copeland, Larry J., primary, de la Hoya, Miguel, primary, Segura, Pedro Perez, primary, Nevanlinna, Heli, primary, Aittomäki, Kristiina, primary, van Os, Theo A.M., primary, Meijers-Heijboer, Hanne E.J., primary, van der Hout, Annemarie H., primary, Vreeswijk, Maaike P.G., primary, Hoogerbrugge, Nicoline, primary, Ausems, Margreet G.E.M., primary, van Doorn, Helena C., primary, Collée, J. Margriet, primary, Olah, Edith, primary, Diez, Orland, primary, Blanco, Ignacio, primary, Lazaro, Conxi, primary, Brunet, Joan, primary, Feliubadalo, Lidia, primary, Cybulski, Cezary, primary, Gronwald, Jacek, primary, Durda, Katarzyna, primary, Jaworska-Bieniek, Katarzyna, primary, Sukiennicki, Grzegorz, primary, Arason, Adalgeir, primary, Chiquette, Jocelyne, primary, Teixeira, Manuel R., primary, Olswold, Curtis, primary, Couch, Fergus J., primary, Lindor, Noralane M., primary, Wang, Xianshu, primary, Szabo, Csilla I., primary, Offit, Kenneth, primary, Corines, Marina, primary, Jacobs, Lauren, primary, Robson, Mark E., primary, Zhang, Liying, primary, Joseph, Vijai, primary, Berger, Andreas, primary, Singer, Christian F., primary, Rappaport, Christine, primary, Kaulich, Daphne Geschwantler, primary, Pfeiler, Georg, primary, Tea, Muy-Kheng M., primary, Phelan, Catherine M., primary, Greene, Mark H., primary, Mai, Phuong L., primary, Rennert, Gad, primary, Mulligan, Anna Marie, primary, Glendon, Gord, primary, Tchatchou, Sandrine, primary, Andrulis, Irene L., primary, Toland, Amanda Ewart, primary, Bojesen, Anders, primary, Pedersen, Inge Sokilde, primary, Thomassen, Mads, primary, Jensen, Uffe Birk, primary, Laitman, Yael, primary, Rantala, Johanna, primary, von Wachenfeldt, Anna, primary, Ehrencrona, Hans, primary, Askmalm, Marie Stenmark, primary, Borg, Åke, primary, Kuchenbaecker, Karoline B., primary, McGuffog, Lesley, primary, Barrowdale, Daniel, primary, Healey, Sue, primary, Lee, Andrew, primary, Pharoah, Paul D.P., primary, Chenevix-Trench, Georgia, primary, Antoniou, Antonis C., primary, and Friedman, Eitan, primary
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- 2023
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47. Supplementary Tables 1-4 from Common Variants at the 19p13.1 and ZNF365 Loci Are Associated with ER Subtypes of Breast Cancer and Ovarian Cancer Risk in BRCA1 and BRCA2 Mutation Carriers
- Author
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Couch, Fergus J., primary, Gaudet, Mia M., primary, Antoniou, Antonis C., primary, Ramus, Susan J., primary, Kuchenbaecker, Karoline B., primary, Soucy, Penny, primary, Beesley, Jonathan, primary, Chen, Xiaoqing, primary, Wang, Xianshu, primary, Kirchhoff, Tomas, primary, McGuffog, Lesley, primary, Barrowdale, Daniel, primary, Lee, Andrew, primary, Healey, Sue, primary, Sinilnikova, Olga M., primary, Andrulis, Irene L., primary, Ozcelik, Hilmi, primary, Mulligan, Anna Marie, primary, Thomassen, Mads, primary, Gerdes, Anne-Marie, primary, Jensen, Uffe Birk, primary, Skytte, Anne-Bine, primary, Kruse, Torben A., primary, Caligo, Maria A., primary, von Wachenfeldt, Anna, primary, Barbany-Bustinza, Gisela, primary, Loman, Niklas, primary, Soller, Maria, primary, Ehrencrona, Hans, primary, Karlsson, Per, primary, Nathanson, Katherine L., primary, Rebbeck, Timothy R., primary, Domchek, Susan M., primary, Jakubowska, Ania, primary, Lubinski, Jan, primary, Jaworska, Katarzyna, primary, Durda, Katarzyna, primary, Złowocka, Elżbieta, primary, Huzarski, Tomasz, primary, Byrski, Tomasz, primary, Gronwald, Jacek, primary, Cybulski, Cezary, primary, Górski, Bohdan, primary, Osorio, Ana, primary, Durán, Mercedes, primary, Tejada, María Isabel, primary, Benitez, Javier, primary, Hamann, Ute, primary, Hogervorst, Frans B.L., primary, van Os, Theo A., primary, van Leeuwen, Flora E., primary, Meijers-Heijboer, Hanne E.J., primary, Wijnen, Juul, primary, Blok, Marinus J., primary, Kets, Marleen, primary, Hooning, Maartje J., primary, Oldenburg, Rogier A., primary, Ausems, Margreet G.E.M., primary, Peock, Susan, primary, Frost, Debra, primary, Ellis, Steve D., primary, Platte, Radka, primary, Fineberg, Elena, primary, Evans, D. Gareth, primary, Jacobs, Chris, primary, Eeles, Rosalind A., primary, Adlard, Julian, primary, Davidson, Rosemarie, primary, Eccles, Diana M., primary, Cole, Trevor, primary, Cook, Jackie, primary, Paterson, Joan, primary, Brewer, Carole, primary, Douglas, Fiona, primary, Hodgson, Shirley V., primary, Morrison, Patrick J., primary, Walker, Lisa, primary, Porteous, Mary E., primary, Kennedy, M. John, primary, Side, Lucy E., primary, Bove, Betsy, primary, Godwin, Andrew K., primary, Stoppa-Lyonnet, Dominique, primary, Fassy-Colcombet, Marion, primary, Castera, Laurent, primary, Cornelis, François, primary, Mazoyer, Sylvie, primary, Léoné, Mélanie, primary, Boutry-Kryza, Nadia, primary, Bressac-de Paillerets, Brigitte, primary, Caron, Olivier, primary, Pujol, Pascal, primary, Coupier, Isabelle, primary, Delnatte, Capucine, primary, Akloul, Linda, primary, Lynch, Henry T., primary, Snyder, Carrie L., primary, Buys, Saundra S., primary, Daly, Mary B., primary, Terry, MaryBeth, primary, Chung, Wendy K., primary, John, Esther M., primary, Miron, Alexander, primary, Southey, Melissa C., primary, Hopper, John L., primary, Goldgar, David E., primary, Singer, Christian F., primary, Rappaport, Christine, primary, Tea, Muy-Kheng M., primary, Fink-Retter, Anneliese, primary, Hansen, Thomas V.O., primary, Nielsen, Finn C., primary, Arason, Aðalgeir, primary, Vijai, Joseph, primary, Shah, Sohela, primary, Sarrel, Kara, primary, Robson, Mark E., primary, Piedmonte, Marion, primary, Phillips, Kelly, primary, Basil, Jack, primary, Rubinstein, Wendy S., primary, Boggess, John, primary, Wakeley, Katie, primary, Ewart-Toland, Amanda, primary, Montagna, Marco, primary, Agata, Simona, primary, Imyanitov, Evgeny N., primary, Isaacs, Claudine, primary, Janavicius, Ramunas, primary, Lazaro, Conxi, primary, Blanco, Ignacio, primary, Feliubadalo, Lidia, primary, Brunet, Joan, primary, Gayther, Simon A., primary, Pharoah, Paul P.D., primary, Odunsi, Kunle O., primary, Karlan, Beth Y., primary, Walsh, Christine S., primary, Olah, Edith, primary, Teo, Soo Hwang, primary, Ganz, Patricia A., primary, Beattie, Mary S., primary, van Rensburg, Elizabeth J., primary, Dorfling, Cecelia M., primary, Diez, Orland, primary, Kwong, Ava, primary, Schmutzler, Rita K., primary, Wappenschmidt, Barbara, primary, Engel, Christoph, primary, Meindl, Alfons, primary, Ditsch, Nina, primary, Arnold, Norbert, primary, Heidemann, Simone, primary, Niederacher, Dieter, primary, Preisler-Adams, Sabine, primary, Gadzicki, Dorothea, primary, Varon-Mateeva, Raymonda, primary, Deissler, Helmut, primary, Gehrig, Andrea, primary, Sutter, Christian, primary, Kast, Karin, primary, Fiebig, Britta, primary, Heinritz, Wolfram, primary, Caldes, Trinidad, primary, de la Hoya, Miguel, primary, Muranen, Taru A., primary, Nevanlinna, Heli, primary, Tischkowitz, Marc D., primary, Spurdle, Amanda B., primary, Neuhausen, Susan L., primary, Ding, Yuan Chun, primary, Lindor, Noralane M., primary, Fredericksen, Zachary, primary, Pankratz, V. Shane, primary, Peterlongo, Paolo, primary, Manoukian, Siranoush, primary, Peissel, Bernard, primary, Zaffaroni, Daniela, primary, Barile, Monica, primary, Bernard, Loris, primary, Viel, Alessandra, primary, Giannini, Giuseppe, primary, Varesco, Liliana, primary, Radice, Paolo, primary, Greene, Mark H., primary, Mai, Phuong L., primary, Easton, Douglas F., primary, Chenevix-Trench, Georgia, primary, Offit, Kenneth, primary, and Simard, Jacques, primary
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- 2023
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48. Supplementary Table 3 from Candidate Genetic Modifiers for Breast and Ovarian Cancer Risk in BRCA1 and BRCA2 Mutation Carriers
- Author
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Peterlongo, Paolo, primary, Chang-Claude, Jenny, primary, Moysich, Kirsten B., primary, Rudolph, Anja, primary, Schmutzler, Rita K., primary, Simard, Jacques, primary, Soucy, Penny, primary, Eeles, Rosalind A., primary, Easton, Douglas F., primary, Hamann, Ute, primary, Wilkening, Stefan, primary, Chen, Bowang, primary, Rookus, Matti A., primary, Schmidt, Marjanka K., primary, van der Baan, Frederieke H., primary, Spurdle, Amanda B., primary, Walker, Logan C., primary, Lose, Felicity, primary, Maia, Ana-Teresa, primary, Montagna, Marco, primary, Matricardi, Laura, primary, Lubinski, Jan, primary, Jakubowska, Anna, primary, Gómez Garcia, Encarna B., primary, Olopade, Olufunmilayo I., primary, Nussbaum, Robert L., primary, Nathanson, Katherine L., primary, Domchek, Susan M., primary, Rebbeck, Timothy R., primary, Arun, Banu K., primary, Karlan, Beth Y., primary, Orsulic, Sandra, primary, Lester, Jenny, primary, Chung, Wendy K., primary, Miron, Alex, primary, Southey, Melissa C., primary, Goldgar, David E., primary, Buys, Saundra S., primary, Janavicius, Ramunas, primary, Dorfling, Cecilia M., primary, van Rensburg, Elizabeth J., primary, Ding, Yuan Chun, primary, Neuhausen, Susan L., primary, Hansen, Thomas V.O., primary, Gerdes, Anne-Marie, primary, Ejlertsen, Bent, primary, Jønson, Lars, primary, Osorio, Ana, primary, Martínez-Bouzas, Cristina, primary, Benitez, Javier, primary, Conway, Edye E., primary, Blazer, Kathleen R., primary, Weitzel, Jeffrey N., primary, Manoukian, Siranoush, primary, Peissel, Bernard, primary, Zaffaroni, Daniela, primary, Scuvera, Giulietta, primary, Barile, Monica, primary, Ficarazzi, Filomena, primary, Mariette, Frederique, primary, Fortuzzi, Stefano, primary, Viel, Alessandra, primary, Giannini, Giuseppe, primary, Papi, Laura, primary, Martayan, Aline, primary, Tibiletti, Maria Grazia, primary, Radice, Paolo, primary, Vratimos, Athanassios, primary, Fostira, Florentia, primary, Garber, Judy E., primary, Donaldson, Alan, primary, Brewer, Carole, primary, Foo, Claire, primary, Evans, D. Gareth R., primary, Frost, Debra, primary, Eccles, Diana, primary, Brady, Angela, primary, Cook, Jackie, primary, Tischkowitz, Marc, primary, Adlard, Julian, primary, Barwell, Julian, primary, Walker, Lisa, primary, Izatt, Louise, primary, Side, Lucy E., primary, Kennedy, M. John, primary, Rogers, Mark T., primary, Porteous, Mary E., primary, Morrison, Patrick J., primary, Platte, Radka, primary, Davidson, Rosemarie, primary, Hodgson, Shirley V., primary, Ellis, Steve, primary, Cole, Trevor, primary, Godwin, Andrew K., primary, Claes, Kathleen, primary, Van Maerken, Tom, primary, Meindl, Alfons, primary, Gehrig, Andrea, primary, Sutter, Christian, primary, Engel, Christoph, primary, Niederacher, Dieter, primary, Steinemann, Doris, primary, Plendl, Hansjoerg, primary, Kast, Karin, primary, Rhiem, Kerstin, primary, Ditsch, Nina, primary, Arnold, Norbert, primary, Varon-Mateeva, Raymonda, primary, Wappenschmidt, Barbara, primary, Wang-Gohrke, Shan, primary, Bressac-de Paillerets, Brigitte, primary, Buecher, Bruno, primary, Delnatte, Capucine, primary, Houdayer, Claude, primary, Stoppa-Lyonnet, Dominique, primary, Damiola, Francesca, primary, Coupier, Isabelle, primary, Barjhoux, Laure, primary, Venat-Bouvet, Laurence, primary, Golmard, Lisa, primary, Boutry-Kryza, Nadia, primary, Sinilnikova, Olga M., primary, Caron, Olivier, primary, Pujol, Pascal, primary, Mazoyer, Sylvie, primary, Belotti, Muriel, primary, Piedmonte, Marion, primary, Friedlander, Michael L., primary, Rodriguez, Gustavo C., primary, Copeland, Larry J., primary, de la Hoya, Miguel, primary, Segura, Pedro Perez, primary, Nevanlinna, Heli, primary, Aittomäki, Kristiina, primary, van Os, Theo A.M., primary, Meijers-Heijboer, Hanne E.J., primary, van der Hout, Annemarie H., primary, Vreeswijk, Maaike P.G., primary, Hoogerbrugge, Nicoline, primary, Ausems, Margreet G.E.M., primary, van Doorn, Helena C., primary, Collée, J. Margriet, primary, Olah, Edith, primary, Diez, Orland, primary, Blanco, Ignacio, primary, Lazaro, Conxi, primary, Brunet, Joan, primary, Feliubadalo, Lidia, primary, Cybulski, Cezary, primary, Gronwald, Jacek, primary, Durda, Katarzyna, primary, Jaworska-Bieniek, Katarzyna, primary, Sukiennicki, Grzegorz, primary, Arason, Adalgeir, primary, Chiquette, Jocelyne, primary, Teixeira, Manuel R., primary, Olswold, Curtis, primary, Couch, Fergus J., primary, Lindor, Noralane M., primary, Wang, Xianshu, primary, Szabo, Csilla I., primary, Offit, Kenneth, primary, Corines, Marina, primary, Jacobs, Lauren, primary, Robson, Mark E., primary, Zhang, Liying, primary, Joseph, Vijai, primary, Berger, Andreas, primary, Singer, Christian F., primary, Rappaport, Christine, primary, Kaulich, Daphne Geschwantler, primary, Pfeiler, Georg, primary, Tea, Muy-Kheng M., primary, Phelan, Catherine M., primary, Greene, Mark H., primary, Mai, Phuong L., primary, Rennert, Gad, primary, Mulligan, Anna Marie, primary, Glendon, Gord, primary, Tchatchou, Sandrine, primary, Andrulis, Irene L., primary, Toland, Amanda Ewart, primary, Bojesen, Anders, primary, Pedersen, Inge Sokilde, primary, Thomassen, Mads, primary, Jensen, Uffe Birk, primary, Laitman, Yael, primary, Rantala, Johanna, primary, von Wachenfeldt, Anna, primary, Ehrencrona, Hans, primary, Askmalm, Marie Stenmark, primary, Borg, Åke, primary, Kuchenbaecker, Karoline B., primary, McGuffog, Lesley, primary, Barrowdale, Daniel, primary, Healey, Sue, primary, Lee, Andrew, primary, Pharoah, Paul D.P., primary, Chenevix-Trench, Georgia, primary, Antoniou, Antonis C., primary, and Friedman, Eitan, primary
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- 2023
- Full Text
- View/download PDF
49. Data from Common Variants at the 19p13.1 and ZNF365 Loci Are Associated with ER Subtypes of Breast Cancer and Ovarian Cancer Risk in BRCA1 and BRCA2 Mutation Carriers
- Author
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Couch, Fergus J., primary, Gaudet, Mia M., primary, Antoniou, Antonis C., primary, Ramus, Susan J., primary, Kuchenbaecker, Karoline B., primary, Soucy, Penny, primary, Beesley, Jonathan, primary, Chen, Xiaoqing, primary, Wang, Xianshu, primary, Kirchhoff, Tomas, primary, McGuffog, Lesley, primary, Barrowdale, Daniel, primary, Lee, Andrew, primary, Healey, Sue, primary, Sinilnikova, Olga M., primary, Andrulis, Irene L., primary, Ozcelik, Hilmi, primary, Mulligan, Anna Marie, primary, Thomassen, Mads, primary, Gerdes, Anne-Marie, primary, Jensen, Uffe Birk, primary, Skytte, Anne-Bine, primary, Kruse, Torben A., primary, Caligo, Maria A., primary, von Wachenfeldt, Anna, primary, Barbany-Bustinza, Gisela, primary, Loman, Niklas, primary, Soller, Maria, primary, Ehrencrona, Hans, primary, Karlsson, Per, primary, Nathanson, Katherine L., primary, Rebbeck, Timothy R., primary, Domchek, Susan M., primary, Jakubowska, Ania, primary, Lubinski, Jan, primary, Jaworska, Katarzyna, primary, Durda, Katarzyna, primary, Złowocka, Elżbieta, primary, Huzarski, Tomasz, primary, Byrski, Tomasz, primary, Gronwald, Jacek, primary, Cybulski, Cezary, primary, Górski, Bohdan, primary, Osorio, Ana, primary, Durán, Mercedes, primary, Tejada, María Isabel, primary, Benitez, Javier, primary, Hamann, Ute, primary, Hogervorst, Frans B.L., primary, van Os, Theo A., primary, van Leeuwen, Flora E., primary, Meijers-Heijboer, Hanne E.J., primary, Wijnen, Juul, primary, Blok, Marinus J., primary, Kets, Marleen, primary, Hooning, Maartje J., primary, Oldenburg, Rogier A., primary, Ausems, Margreet G.E.M., primary, Peock, Susan, primary, Frost, Debra, primary, Ellis, Steve D., primary, Platte, Radka, primary, Fineberg, Elena, primary, Evans, D. Gareth, primary, Jacobs, Chris, primary, Eeles, Rosalind A., primary, Adlard, Julian, primary, Davidson, Rosemarie, primary, Eccles, Diana M., primary, Cole, Trevor, primary, Cook, Jackie, primary, Paterson, Joan, primary, Brewer, Carole, primary, Douglas, Fiona, primary, Hodgson, Shirley V., primary, Morrison, Patrick J., primary, Walker, Lisa, primary, Porteous, Mary E., primary, Kennedy, M. John, primary, Side, Lucy E., primary, Bove, Betsy, primary, Godwin, Andrew K., primary, Stoppa-Lyonnet, Dominique, primary, Fassy-Colcombet, Marion, primary, Castera, Laurent, primary, Cornelis, François, primary, Mazoyer, Sylvie, primary, Léoné, Mélanie, primary, Boutry-Kryza, Nadia, primary, Bressac-de Paillerets, Brigitte, primary, Caron, Olivier, primary, Pujol, Pascal, primary, Coupier, Isabelle, primary, Delnatte, Capucine, primary, Akloul, Linda, primary, Lynch, Henry T., primary, Snyder, Carrie L., primary, Buys, Saundra S., primary, Daly, Mary B., primary, Terry, MaryBeth, primary, Chung, Wendy K., primary, John, Esther M., primary, Miron, Alexander, primary, Southey, Melissa C., primary, Hopper, John L., primary, Goldgar, David E., primary, Singer, Christian F., primary, Rappaport, Christine, primary, Tea, Muy-Kheng M., primary, Fink-Retter, Anneliese, primary, Hansen, Thomas V.O., primary, Nielsen, Finn C., primary, Arason, Aðalgeir, primary, Vijai, Joseph, primary, Shah, Sohela, primary, Sarrel, Kara, primary, Robson, Mark E., primary, Piedmonte, Marion, primary, Phillips, Kelly, primary, Basil, Jack, primary, Rubinstein, Wendy S., primary, Boggess, John, primary, Wakeley, Katie, primary, Ewart-Toland, Amanda, primary, Montagna, Marco, primary, Agata, Simona, primary, Imyanitov, Evgeny N., primary, Isaacs, Claudine, primary, Janavicius, Ramunas, primary, Lazaro, Conxi, primary, Blanco, Ignacio, primary, Feliubadalo, Lidia, primary, Brunet, Joan, primary, Gayther, Simon A., primary, Pharoah, Paul P.D., primary, Odunsi, Kunle O., primary, Karlan, Beth Y., primary, Walsh, Christine S., primary, Olah, Edith, primary, Teo, Soo Hwang, primary, Ganz, Patricia A., primary, Beattie, Mary S., primary, van Rensburg, Elizabeth J., primary, Dorfling, Cecelia M., primary, Diez, Orland, primary, Kwong, Ava, primary, Schmutzler, Rita K., primary, Wappenschmidt, Barbara, primary, Engel, Christoph, primary, Meindl, Alfons, primary, Ditsch, Nina, primary, Arnold, Norbert, primary, Heidemann, Simone, primary, Niederacher, Dieter, primary, Preisler-Adams, Sabine, primary, Gadzicki, Dorothea, primary, Varon-Mateeva, Raymonda, primary, Deissler, Helmut, primary, Gehrig, Andrea, primary, Sutter, Christian, primary, Kast, Karin, primary, Fiebig, Britta, primary, Heinritz, Wolfram, primary, Caldes, Trinidad, primary, de la Hoya, Miguel, primary, Muranen, Taru A., primary, Nevanlinna, Heli, primary, Tischkowitz, Marc D., primary, Spurdle, Amanda B., primary, Neuhausen, Susan L., primary, Ding, Yuan Chun, primary, Lindor, Noralane M., primary, Fredericksen, Zachary, primary, Pankratz, V. Shane, primary, Peterlongo, Paolo, primary, Manoukian, Siranoush, primary, Peissel, Bernard, primary, Zaffaroni, Daniela, primary, Barile, Monica, primary, Bernard, Loris, primary, Viel, Alessandra, primary, Giannini, Giuseppe, primary, Varesco, Liliana, primary, Radice, Paolo, primary, Greene, Mark H., primary, Mai, Phuong L., primary, Easton, Douglas F., primary, Chenevix-Trench, Georgia, primary, Offit, Kenneth, primary, and Simard, Jacques, primary
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- 2023
- Full Text
- View/download PDF
50. No clinical utility of KRAS variant rs61764370 for ovarian or breast cancer
- Author
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Hollestelle, Antoinette, van der Baan, Frederieke H., Berchuck, Andrew, Johnatty, Sharon E., Aben, Katja K., Agnarsson, Bjarni A., Aittomäki, Kristiina, Alducci, Elisa, Andrulis, Irene L., Anton-Culver, Hoda, Antonenkova, Natalia N., Antoniou, Antonis C., Apicella, Carmel, Arndt, Volker, Arnold, Norbert, Arun, Banu K., Arver, Brita, Ashworth, Alan, Baglietto, Laura, Balleine, Rosemary, Bandera, Elisa V., Barrowdale, Daniel, Bean, Yukie T., Beckmann, Lars, Beckmann, Matthias W., Benitez, Javier, Berger, Andreas, Berger, Raanan, Beuselinck, Benoit, Bisogna, Maria, Bjorge, Line, Blomqvist, Carl, Bogdanova, Natalia V., Bojesen, Anders, Bojesen, Stig E., Bolla, Manjeet K., Bonanni, Bernardo, Brand, Judith S., Brauch, Hiltrud, Brenner, Hermann, Brinton, Louise, Brooks-Wilson, Angela, Bruinsma, Fiona, Brunet, Joan, Brüning, Thomas, Budzilowska, Agnieszka, Bunker, Clareann H., Burwinkel, Barbara, Butzow, Ralf, Buys, Saundra S., Caligo, Maria A., Campbell, Ian, Carter, Jonathan, Chang-Claude, Jenny, Chanock, Stephen J., Claes, Kathleen B.M., Collée, J. Margriet, Cook, Linda S., Couch, Fergus J., Cox, Angela, Cramer, Daniel, Cross, Simon S., Cunningham, Julie M., Cybulski, Cezary, Czene, Kamila, Damiola, Francesca, Dansonka-Mieszkowska, Agnieszka, Darabi, Hatef, de la Hoya, Miguel, deFazio, Anna, Dennis, Joseph, Devilee, Peter, Dicks, Ed M., Diez, Orland, Doherty, Jennifer A., Domchek, Susan M., Dorfling, Cecilia M., Dörk, Thilo, Silva, Isabel Dos Santos, du Bois, Andreas, Dumont, Martine, Dunning, Alison M., Duran, Mercedes, Easton, Douglas F., Eccles, Diana, Edwards, Robert P., Ehrencrona, Hans, Ejlertsen, Bent, Ekici, Arif B., Ellis, Steve D., Engel, Christoph, Eriksson, Mikael, Fasching, Peter A., Feliubadalo, Lidia, Figueroa, Jonine, Flesch-Janys, Dieter, Fletcher, Olivia, Fontaine, Annette, Fortuzzi, Stefano, Fostira, Florentia, Fridley, Brooke L., Friebel, Tara, Friedman, Eitan, Friel, Grace, Frost, Debra, Garber, Judy, García-Closas, Montserrat, Gayther, Simon A., Gentry-Maharaj, Aleksandra, Gerdes, Anne-Marie, Giles, Graham G., Glasspool, Rosalind, Glendon, Gord, Godwin, Andrew K., Goodman, Marc T., Gore, Martin, Greene, Mark H., Grip, Mervi, Gronwald, Jacek, Gschwantler Kaulich, Daphne, Guénel, Pascal, Guzman, Starr R., Haeberle, Lothar, Haiman, Christopher A., Hall, Per, Halverson, Sandra L., Hamann, Ute, Hansen, Thomas V.O., Harter, Philipp, Hartikainen, Jaana M., Healey, Sue, Hein, Alexander, Heitz, Florian, Henderson, Brian E., Herzog, Josef, T Hildebrandt, Michelle A., Høgdall, Claus K., Høgdall, Estrid, Hogervorst, Frans B.L., Hopper, John L., Humphreys, Keith, Huzarski, Tomasz, Imyanitov, Evgeny N., Isaacs, Claudine, Jakubowska, Anna, Janavicius, Ramunas, Jaworska, Katarzyna, Jensen, Allan, Jensen, Uffe Birk, Johnson, Nichola, Jukkola-Vuorinen, Arja, Kabisch, Maria, Karlan, Beth Y., Kataja, Vesa, Kauff, Noah, Kelemen, Linda E., Kerin, Michael J., Kiemeney, Lambertus A., Kjaer, Susanne K., Knight, Julia A., Knol-Bout, Jacoba P., Konstantopoulou, Irene, Kosma, Veli-Matti, Krakstad, Camilla, Kristensen, Vessela, Kuchenbaecker, Karoline B., Kupryjanczyk, Jolanta, Laitman, Yael, Lambrechts, Diether, Lambrechts, Sandrina, Larson, Melissa C., Lasa, Adriana, Laurent-Puig, Pierre, Lazaro, Conxi, Le, Nhu D., Le Marchand, Loic, Leminen, Arto, Lester, Jenny, Levine, Douglas A., Li, Jingmei, Liang, Dong, Lindblom, Annika, Lindor, Noralane, Lissowska, Jolanta, Long, Jirong, Lu, Karen H., Lubinski, Jan, Lundvall, Lene, Lurie, Galina, Mai, Phuong L., Mannermaa, Arto, Margolin, Sara, Mariette, Frederique, Marme, Frederik, Martens, John W.M., Massuger, Leon F.A.G., Maugard, Christine, Mazoyer, Sylvie, McGuffog, Lesley, McGuire, Valerie, McLean, Catriona, McNeish, Iain, Meindl, Alfons, Menegaux, Florence, Menéndez, Primitiva, Menkiszak, Janusz, Menon, Usha, Mensenkamp, Arjen R., Miller, Nicola, Milne, Roger L., Modugno, Francesmary, Montagna, Marco, Moysich, Kirsten B., Müller, Heiko, Mulligan, Anna Marie, Muranen, Taru A., Narod, Steven A., Nathanson, Katherine L., Ness, Roberta B., 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