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Aggregation tests identify new gene associations with breast cancer in populations with diverse ancestry.

Authors :
Mueller, Stefanie H
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
Mueller, Stefanie H
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
Source :
Genome medicine; vol 15, iss 1, 7; 1756-994X
Publication Year :
2023

Abstract

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. 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. 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. 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.

Details

Database :
OAIster
Journal :
Genome medicine; vol 15, iss 1, 7; 1756-994X
Notes :
application/pdf, Genome medicine vol 15, iss 1, 7 1756-994X
Publication Type :
Electronic Resource
Accession number :
edsoai.on1391582520
Document Type :
Electronic Resource