797 results on '"Rudnik-Schöneborn, Sabine"'
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2. Only one beer can be mortal: a case report of two sisters with cardiac arrest due to a homozygous mutation in PPA2 gene
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Manzanilla-Romero, Héctor Hugo, Schermer, Elisabeth, Mayr, Agnes, and Rudnik-Schöneborn, Sabine
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- 2023
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3. Genetische Diagnostik bei ungewollt kinderlosen Paaren oder wiederholten Fehlgeburten
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Rudnik-Schöneborn, Sabine, Wyrwoll, Margot J., Tüttelmann, Frank, Toth, Bettina, Pinggera, Germar-M., and Zschocke, Johannes
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- 2023
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4. Familial acute aortic dissection associated with a novel ACTA2 germline variant
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Strecker, Thomas, Wiesmueller, Felix, Rudnik-Schöneborn, Sabine, Hoyer, Juliane, Reis, André, Weyand, Michael, and Agaimy, Abbas
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- 2023
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5. Biallelic PAN2 variants in individuals with a syndromic neurodevelopmental disorder and multiple congenital anomalies
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Reuter, Miriam S., Zech, Michael, Hempel, Maja, Altmüller, Janine, Heung, Tracy, Pölsler, Laura, Santer, René, Thiele, Holger, Trost, Brett, Kubisch, Christian, Scherer, Stephen W., Rudnik-Schöneborn, Sabine, Bassett, Anne S., and Lessel, Davor
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- 2022
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6. GestaltMatcher Database - A global reference for facial phenotypic variability in rare human diseases
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Hsieh, Tzung-Chien, primary, Lesmann, Hellen, additional, Hustinx, Alexander, additional, Moosa, Shahida, additional, Marchi, Elaine, additional, Martin, Maria del Pilar Caro, additional, Abdelrazek, Ibrahim, additional, Pantel, Jean Tori, additional, Klinkhammer, Hannah, additional, Hagen, Merle ten, additional, Thong, Meow-Keong, additional, Mazlan, Rifhan Azwani Binti, additional, Tae, Sok Kun, additional, Kamphans, Tom, additional, Meiswinkel, Wolfgang, additional, Li, Jing-Mei, additional, Javanmardi, Behnam, additional, Knaus, Alexej, additional, Uwineza, Annette, additional, Knopp, Cordula, additional, Tkemaladze, Tinatin, additional, Elbracht, Miriam, additional, Mattern, Larissa, additional, Jamra, Rami Abou, additional, Velmans, Clara, additional, Strehlow, Vincent, additional, Jacob, Maureen, additional, Peron, Angela, additional, Dias, Cristina, additional, Nunes, Beatriz, additional, Vilella, Thainá, additional, Pinheiro, Isabel, additional, Kim, Chong, additional, Melaragno, Maria, additional, Weiland, Hannah, additional, Kaptain, Sophia, additional, Chwiałkowska, Karolina , additional, Kwasniewski, Miroslaw, additional, Saad, Ramy, additional, Wiethoff, Sarah, additional, Goel, Himanshu, additional, Tang, Clara, additional, Hau, Anna, additional, Barakat, Tahsin Stefan, additional, Panek, Przemysław, additional, Nabil, Amira, additional, Suh, Julia, additional, Braun, Frederik, additional, Gomy, Israel, additional, Averdunk, Luisa, additional, Ekure, Ekanem, additional, Bergant, Gaber, additional, Peterlin, Borut, additional, Graziano, Claudio, additional, Gaboon, Nagwa, additional, Fiesco-Roa, Moisés, additional, Spinelli, Alessandro, additional, Wilpert, Nina-Maria, additional, Phowthongkum, Prasit, additional, Güzel, Nergis, additional, Haack, Tobias, additional, Bitar, Rana, additional, Tzschach, Andreas, additional, Rodriguez-Palmero, Agusti, additional, Brunet, Theresa, additional, Rudnik-Schöneborn, Sabine, additional, Contreras-Capetillo, Silvina, additional, Oberlack, Ava, additional, Samango-Sprouse, Carole, additional, Sadeghin, Teresa, additional, Olaya, Margaret, additional, Platzer, Konrad, additional, Borovikov, Artem, additional, Schnabel, Franziska, additional, Heuft, Lara, additional, Herrmann, Vera, additional, Oegema, Renske, additional, Elkhateeb, Nour, additional, Kumar, Sheetal, additional, Komlosi, Katalin, additional, Mohamed, Khoushoua, additional, Kalantari, Silvia, additional, Sirchia, Fabio, additional, Martinez-Monseny, Antonio, additional, Höller, Matthias, additional, Mohamed, Amal, additional, Lasa-Aranzasti, Amaia, additional, Sayer, John, additional, Ehmke, Nadja, additional, Danyel, Magdalena, additional, Sczakiel, Henrike, additional, Schwartzmann, Sarina, additional, Boschann, Felix, additional, Zhao, Max, additional, Adams, Ronja, additional, Einicke, Lara, additional, Horn, Denise, additional, Chew, Kee Seang, additional, Kam, Choy Chen, additional, Karakoyun, Miray, additional, Pode-Shakked, Ben, additional, Eliyahu, Aviva, additional, Rock, Rachel, additional, Carrion, Teresa, additional, Chorin, Odelia, additional, Zarate, Yuri, additional, Martinez, Marcello, additional, Karakaya, Mert, additional, Tung, Moon Ley, additional, Chandra, Bharatendu, additional, Lumaka, Aimé, additional, Shinawi, Marwan, additional, Blackburn, Patrick, additional, Wang, Tianyun, additional, Niehues, Tim, additional, Hu, Ping, additional, Waikel, Rebekah, additional, Hanchard, Suzanna Ledgister, additional, Elmakkawy, Gehad, additional, Safwat, Sylvia, additional, Ebstein, Frédéric, additional, Krüger, Elke, additional, Küry, Sébastien, additional, Bezieau, Stephane, additional, Arlt, Annabelle, additional, Marbach, Felix, additional, Li, Dong, additional, Dupuis, Lucie, additional, Mendoza-Londono, Roberto, additional, Houge, Sofia Douzgou, additional, Weis, Denisa, additional, Chung, Brian, additional, Mak, Christopher, additional, Elcioglu, Nursel, additional, Aykut, Ayca, additional, Şimşek-Kiper, Peli, additional, Bögershausen, Nina, additional, Wollnik, Bernd, additional, Bentzen, Heidi Beate, additional, Kurth, Ingo, additional, Netzer, Christian, additional, Jezela-Stanek, Aleksandra, additional, Devriendt, Koen, additional, Gripp, Karen, additional, Mücke, Martin, additional, Verloes, Alain, additional, Schaaf, Christian, additional, Nellåker, Christoffer, additional, Solomon, Benjamin, additional, Nöthen, Markus, additional, Abdalla, Ebtesam, additional, Lyon, Gholson, additional, Krawitz, Peter, additional, Kayserili, Hulya, additional, Toutouna, Louiza, additional, Schmidt, Axel, additional, Roth, Regina, additional, Wieczorek, Dagmar, additional, and Olinger, Eric, additional
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- 2024
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7. The current state of the Genetic Counselor Profession in the German-speaking Countries
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Schwaninger, Gunda, primary, Heidemann, Simone, additional, Rudnik-Schöneborn, Sabine, additional, and Zschocke, Johannes, additional
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- 2024
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8. Loss of function of SLC25A46 causes lethal congenital pontocerebellar hypoplasia.
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Wan, Jijun, Steffen, Janos, Yourshaw, Michael, Mamsa, Hafsa, Andersen, Erik, Rudnik-Schöneborn, Sabine, Pope, Kate, Howell, Katherine B, McLean, Catriona A, Kornberg, Andrew J, Joseph, Jörg, Lockhart, Paul J, Zerres, Klaus, Ryan, Monique M, Nelson, Stanley F, Koehler, Carla M, and Jen, Joanna C
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Biomedical and Clinical Sciences ,Neurosciences ,Genetics ,Pediatric ,Orphan Drug ,Neurodegenerative ,Rare Diseases ,Brain Disorders ,Congenital Structural Anomalies ,Aetiology ,2.1 Biological and endogenous factors ,Neurological ,Amino Acids ,Animals ,Animals ,Genetically Modified ,Brain ,Cell Line ,Transformed ,Cells ,Cultured ,Cerebellar Diseases ,Cohort Studies ,Embryo ,Nonmammalian ,Female ,Genetic Predisposition to Disease ,Humans ,Infant ,Magnetic Resonance Imaging ,Male ,Mitochondria ,Mitochondrial Dynamics ,Mitochondrial Proteins ,Models ,Molecular ,Mutation ,Phosphate Transport Proteins ,Polymorphism ,Single Nucleotide ,Zebrafish ,pontocerebellar hypoplasia ,SLC25A46 ,mitochondria ,optic atrophy spectrum disorder ,Medical and Health Sciences ,Psychology and Cognitive Sciences ,Neurology & Neurosurgery ,Biomedical and clinical sciences ,Health sciences ,Psychology - Abstract
Disturbed mitochondrial fusion and fission have been linked to various neurodegenerative disorders. In siblings from two unrelated families who died soon after birth with a profound neurodevelopmental disorder characterized by pontocerebellar hypoplasia and apnoea, we discovered a missense mutation and an exonic deletion in the SLC25A46 gene encoding a mitochondrial protein recently implicated in optic atrophy spectrum disorder. We performed functional studies that confirmed the mitochondrial localization and pro-fission properties of SLC25A46. Knockdown of slc24a46 expression in zebrafish embryos caused brain malformation, spinal motor neuron loss, and poor motility. At the cellular level, we observed abnormally elongated mitochondria, which was rescued by co-injection of the wild-type but not the mutant slc25a46 mRNA. Conversely, overexpression of the wild-type protein led to mitochondrial fragmentation and disruption of the mitochondrial network. In contrast to mutations causing non-lethal optic atrophy, missense mutations causing lethal congenital pontocerebellar hypoplasia markedly destabilize the protein. Indeed, the clinical severity appears inversely correlated with the relative stability of the mutant protein. This genotype-phenotype correlation underscores the importance of SLC25A46 and fine tuning of mitochondrial fission and fusion in pontocerebellar hypoplasia and central neurodevelopment in addition to optic and peripheral neuropathy across the life span.
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- 2016
9. Bi-allelic ACBD6 variants lead to a neurodevelopmental syndrome with progressive and complex movement disorders
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Kaiyrzhanov, Rauan, Rad, Aboulfazl, Lin, Sheng-Jia, Bertoli-Avella, Aida, Kallemeijn, Wouter W, Godwin, Annie, Zaki, Maha S, Huang, Kevin, Lau, Tracy, Petree, Cassidy, Efthymiou, Stephanie, Ghayoor Karimiani, Ehsan, Hempel, Maja, Normand, Elizabeth A, Rudnik-Schöneborn, Sabine, Schatz, Ulrich A, Baggelaar, Marc P, Ilyas, Muhammad, Sultan, Tipu, Alvi, Javeria Raza, Ganieva, Manizha, Fowler, Ben, Aanicai, Ruxandra, Akay Tayfun, Gulsen, Al Saman, Abdulaziz, Alswaid, Abdulrahman, Amiri, Nafise, Asilova, Nilufar, Shotelersuk, Vorasuk, Yeetong, Patra, Azam, Matloob, Babaei, Meisam, Bahrami Monajemi, Gholamreza, Mohammadi, Pouria, Samie, Saeed, Banu, Selina Husna, Basto, Jorge Pinto, Kortüm, Fanny, Bauer, Mislen, Bauer, Peter, Beetz, Christian, Garshasbi, Masoud, Hameed Issa, Awatif, Eyaid, Wafaa, Ahmed, Hind, Hashemi, Narges, Hassanpour, Kazem, Herman, Isabella, Ibrohimov, Sherozjon, Abdul-Majeed, Ban A, Imdad, Maria, Isrofilov, Maksudjon, Kaiyal, Qassem, Khan, Suliman, Kirmse, Brian, Koster, Janet, Lourenço, Charles Marques, Mitani, Tadahiro, Moldovan, Oana, Murphy, David, Najafi, Maryam, Pehlivan, Davut, Rocha, Maria Eugenia, Salpietro, Vincenzo, Schmidts, Miriam, Shalata, Adel, Mahroum, Mohammad, Talbeya, Jawabreh Kassem, Taylor, Robert W, Vazquez, Dayana, Vetro, Annalisa, Waterham, Hans R, Zaman, Mashaya, Schrader, Tina A, Chung, Wendy K, Guerrini, Renzo, Lupski, James R, Gleeson, Joseph, Suri, Mohnish, Jamshidi, Yalda, Bhatia, Kailash P, Vona, Barbara, Schrader, Michael, Severino, Mariasavina, Guille, Matthew, Tate, Edward W, Varshney, Gaurav K, Houlden, Henry, Maroofian, Reza, Kaiyrzhanov, Rauan, Rad, Aboulfazl, Lin, Sheng-Jia, Bertoli-Avella, Aida, Kallemeijn, Wouter W, Godwin, Annie, Zaki, Maha S, Huang, Kevin, Lau, Tracy, Petree, Cassidy, Efthymiou, Stephanie, Ghayoor Karimiani, Ehsan, Hempel, Maja, Normand, Elizabeth A, Rudnik-Schöneborn, Sabine, Schatz, Ulrich A, Baggelaar, Marc P, Ilyas, Muhammad, Sultan, Tipu, Alvi, Javeria Raza, Ganieva, Manizha, Fowler, Ben, Aanicai, Ruxandra, Akay Tayfun, Gulsen, Al Saman, Abdulaziz, Alswaid, Abdulrahman, Amiri, Nafise, Asilova, Nilufar, Shotelersuk, Vorasuk, Yeetong, Patra, Azam, Matloob, Babaei, Meisam, Bahrami Monajemi, Gholamreza, Mohammadi, Pouria, Samie, Saeed, Banu, Selina Husna, Basto, Jorge Pinto, Kortüm, Fanny, Bauer, Mislen, Bauer, Peter, Beetz, Christian, Garshasbi, Masoud, Hameed Issa, Awatif, Eyaid, Wafaa, Ahmed, Hind, Hashemi, Narges, Hassanpour, Kazem, Herman, Isabella, Ibrohimov, Sherozjon, Abdul-Majeed, Ban A, Imdad, Maria, Isrofilov, Maksudjon, Kaiyal, Qassem, Khan, Suliman, Kirmse, Brian, Koster, Janet, Lourenço, Charles Marques, Mitani, Tadahiro, Moldovan, Oana, Murphy, David, Najafi, Maryam, Pehlivan, Davut, Rocha, Maria Eugenia, Salpietro, Vincenzo, Schmidts, Miriam, Shalata, Adel, Mahroum, Mohammad, Talbeya, Jawabreh Kassem, Taylor, Robert W, Vazquez, Dayana, Vetro, Annalisa, Waterham, Hans R, Zaman, Mashaya, Schrader, Tina A, Chung, Wendy K, Guerrini, Renzo, Lupski, James R, Gleeson, Joseph, Suri, Mohnish, Jamshidi, Yalda, Bhatia, Kailash P, Vona, Barbara, Schrader, Michael, Severino, Mariasavina, Guille, Matthew, Tate, Edward W, Varshney, Gaurav K, Houlden, Henry, and Maroofian, Reza
- Abstract
The acyl-CoA-binding domain-containing protein 6 (ACBD6) is ubiquitously expressed, plays a role in the acylation of lipids and proteins and regulates the N-myristoylation of proteins via N-myristoyltransferase enzymes (NMTs). However, its precise function in cells is still unclear, as is the consequence of ACBD6 defects on human pathophysiology. Using exome sequencing and extensive international data sharing efforts, we identified 45 affected individuals from 28 unrelated families (consanguinity 93%) with bi-allelic pathogenic, predominantly loss-of-function (18/20) variants in ACBD6. We generated zebrafish and Xenopus tropicalis acbd6 knockouts by CRISPR/Cas9 and characterized the role of ACBD6 on protein N-myristoylation with myristic acid alkyne (YnMyr) chemical proteomics in the model organisms and human cells, with the latter also being subjected further to ACBD6 peroxisomal localization studies. The affected individuals (23 males and 22 females), aged 1-50 years, typically present with a complex and progressive disease involving moderate-to-severe global developmental delay/intellectual disability (100%) with significant expressive language impairment (98%), movement disorders (97%), facial dysmorphism (95%) and mild cerebellar ataxia (85%) associated with gait impairment (94%), limb spasticity/hypertonia (76%), oculomotor (71%) and behavioural abnormalities (65%), overweight (59%), microcephaly (39%) and epilepsy (33%). The most conspicuous and common movement disorder was dystonia (94%), frequently leading to early-onset progressive postural deformities (97%), limb dystonia (55%) and cervical dystonia (31%). A jerky tremor in the upper limbs (63%), a mild head tremor (59%), parkinsonism/hypokinesia developing with advancing age (32%) and simple motor and vocal tics were among other frequent movement disorders. Midline brain malformations including corpus callosum abnormalities (70%), hypoplasia/agenesis of the anterior commissure (66%), short midbrain an
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- 2024
10. GestaltMatcher Database - A global reference for facial phenotypic variability in rare human diseases
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Hsieh, Tzung-Chien, Lesmann, Hellen, Hustinx, Alexander, Moosa, Shahida, Marchi, Elaine, Martin, Maria Del Pilar Caro, Abdelrazek, Ibrahim, Pantel, Jean Tori, Klinkhammer, Hannah, Hagen, Merle Ten, Thong, Meow-Keong, Mazlan, Rifhan Azwani Binti, Tae, Sok Kun, Kamphans, Tom, Meiswinkel, Wolfgang, Javanmardi, Behnam, Knaus, Alexej, Uwineza, Annette, Knopp, Cordula, Tkemaladze, Tinatin, Elbracht, Miriam, Mattern, Larissa, Jamra, Rami Abou, Velmans, Clara, Strehlow, Vincent, Jacob, Maureen, Peron, Angela, Dias, Cristina, Nunes, Beatriz, Vilella, Thainá, Pinheiro, Isabel, Kim, Chong, Melaragno, Maria, Weiland, Hannah, Kaptain, Sophia, Chwiałkowska, Karolina, Kwasniewski, Miroslaw, Saad, Ramy, Wiethoff, Sarah, Goel, Himanshu, Tang, Clara, Hau, Anna, Barakat, Tahsin Stefan, Panek, Przemysław, Nabil, Amira, Suh, Julia, Braun, Frederik, Gomy, Israel, Averdunk, Luisa, Ekure, Ekanem, Bergant, Gaber, Peterlin, Borut, Graziano, Claudio, Gaboon, Nagwa, Fiesco-Roa, Moisés, Spinelli, Alessandro, Wilpert, Nina-Maria, Phowthongkum, Prasit, Güzel, Nergis, Haack, Tobias, Bitar, Rana, Tzschach, Andreas, Rodriguez-Palmero, Agusti, Brunet, Theresa, Rudnik-Schöneborn, Sabine, Contreras-Capetillo, Silvina, Oberlack, Ava, Samango-Sprouse, Carole, Sadeghin, Teresa, Olaya, Margaret, Platzer, Konrad, Borovikov, Artem, Schnabel, Franziska, Heuft, Lara, Herrmann, Vera, Elkhateeb, Nour, Kumar, Sheetal, Komlosi, Katalin, Mohamed, Khoushoua, Kalantari, Silvia, Sirchia, Fabio, Martinez-Monseny, Antonio, Höller, Matthias, Mohamed, Amal, Lasa-Aranzasti, Amaia, Sayer, John, Ehmke, Nadja, Danyel, Magdalena, Sczakiel, Henrike, Schwartzmann, Sarina, Boschann, Felix, Zhao, Max, Adams, Ronja, Einicke, Lara, Chew, Kee Seang, Kam, Choy Chen, Karakoyun, Miray, Pode-Shakked, Ben, Eliyahu, Aviva, Rock, Rachel, Carrion, Teresa, Chorin, Odelia, Zarate, Yuri, Martinez, Marcello, Karakaya, Mert, Tung, Moon Ley, Chandra, Bharatendu, Lumaka, Aimé, Shinawi, Marwan, Blackburn, Patrick, Wang, Tianyun, Niehues, Tim, Hu, Ping, Waikel, Rebekah, Hanchard, Suzanna Ledgister, Elmakkawy, Gehad, Safwat, Sylvia, Ebstein, Frédéric, Krüger, Elke, Küry, Sébastien, Bezieau, Stephane, Arlt, Annabelle, Marbach, Felix, Li, Dong, Dupuis, Lucie, Mendoza-Londono, Roberto, Houge, Sofia Douzgou, Weis, Denisa, Mak, Christopher, Elcioglu, Nursel, Aykut, Ayca, Şimşek-Kiper, Peli, Bögershausen, Nina, Wollnik, Bernd, Bentzen, Heidi Beate, Kurth, Ingo, Netzer, Christian, Jezela-Stanek, Aleksandra, Devriendt, Koen, Gripp, Karen, Mücke, Martin, Verloes, Alain, Schaaf, Christian, Nellåker, Christoffer, Solomon, Benjamin, Nöthen, Markus, Abdalla, Ebtesam, Lyon, Gholson, Krawitz, Peter, Kayserili, Hulya, Toutouna, Louiza, Schmidt, Axel, Roth, Regina, Wieczorek, Dagmar, Olinger, Eric, Hsieh, Tzung-Chien, Lesmann, Hellen, Hustinx, Alexander, Moosa, Shahida, Marchi, Elaine, Martin, Maria Del Pilar Caro, Abdelrazek, Ibrahim, Pantel, Jean Tori, Klinkhammer, Hannah, Hagen, Merle Ten, Thong, Meow-Keong, Mazlan, Rifhan Azwani Binti, Tae, Sok Kun, Kamphans, Tom, Meiswinkel, Wolfgang, Javanmardi, Behnam, Knaus, Alexej, Uwineza, Annette, Knopp, Cordula, Tkemaladze, Tinatin, Elbracht, Miriam, Mattern, Larissa, Jamra, Rami Abou, Velmans, Clara, Strehlow, Vincent, Jacob, Maureen, Peron, Angela, Dias, Cristina, Nunes, Beatriz, Vilella, Thainá, Pinheiro, Isabel, Kim, Chong, Melaragno, Maria, Weiland, Hannah, Kaptain, Sophia, Chwiałkowska, Karolina, Kwasniewski, Miroslaw, Saad, Ramy, Wiethoff, Sarah, Goel, Himanshu, Tang, Clara, Hau, Anna, Barakat, Tahsin Stefan, Panek, Przemysław, Nabil, Amira, Suh, Julia, Braun, Frederik, Gomy, Israel, Averdunk, Luisa, Ekure, Ekanem, Bergant, Gaber, Peterlin, Borut, Graziano, Claudio, Gaboon, Nagwa, Fiesco-Roa, Moisés, Spinelli, Alessandro, Wilpert, Nina-Maria, Phowthongkum, Prasit, Güzel, Nergis, Haack, Tobias, Bitar, Rana, Tzschach, Andreas, Rodriguez-Palmero, Agusti, Brunet, Theresa, Rudnik-Schöneborn, Sabine, Contreras-Capetillo, Silvina, Oberlack, Ava, Samango-Sprouse, Carole, Sadeghin, Teresa, Olaya, Margaret, Platzer, Konrad, Borovikov, Artem, Schnabel, Franziska, Heuft, Lara, Herrmann, Vera, Elkhateeb, Nour, Kumar, Sheetal, Komlosi, Katalin, Mohamed, Khoushoua, Kalantari, Silvia, Sirchia, Fabio, Martinez-Monseny, Antonio, Höller, Matthias, Mohamed, Amal, Lasa-Aranzasti, Amaia, Sayer, John, Ehmke, Nadja, Danyel, Magdalena, Sczakiel, Henrike, Schwartzmann, Sarina, Boschann, Felix, Zhao, Max, Adams, Ronja, Einicke, Lara, Chew, Kee Seang, Kam, Choy Chen, Karakoyun, Miray, Pode-Shakked, Ben, Eliyahu, Aviva, Rock, Rachel, Carrion, Teresa, Chorin, Odelia, Zarate, Yuri, Martinez, Marcello, Karakaya, Mert, Tung, Moon Ley, Chandra, Bharatendu, Lumaka, Aimé, Shinawi, Marwan, Blackburn, Patrick, Wang, Tianyun, Niehues, Tim, Hu, Ping, Waikel, Rebekah, Hanchard, Suzanna Ledgister, Elmakkawy, Gehad, Safwat, Sylvia, Ebstein, Frédéric, Krüger, Elke, Küry, Sébastien, Bezieau, Stephane, Arlt, Annabelle, Marbach, Felix, Li, Dong, Dupuis, Lucie, Mendoza-Londono, Roberto, Houge, Sofia Douzgou, Weis, Denisa, Mak, Christopher, Elcioglu, Nursel, Aykut, Ayca, Şimşek-Kiper, Peli, Bögershausen, Nina, Wollnik, Bernd, Bentzen, Heidi Beate, Kurth, Ingo, Netzer, Christian, Jezela-Stanek, Aleksandra, Devriendt, Koen, Gripp, Karen, Mücke, Martin, Verloes, Alain, Schaaf, Christian, Nellåker, Christoffer, Solomon, Benjamin, Nöthen, Markus, Abdalla, Ebtesam, Lyon, Gholson, Krawitz, Peter, Kayserili, Hulya, Toutouna, Louiza, Schmidt, Axel, Roth, Regina, Wieczorek, Dagmar, and Olinger, Eric
- Abstract
The most important factor that complicates the work of dysmorphologists is the significant phenotypic variability of the human face. Next-Generation Phenotyping (NGP) tools that assist clinicians with recognizing characteristic syndromic patterns are particularly challenged when confronted with patients from populations different from their training data. To that end, we systematically analyzed the impact of genetic ancestry on facial dysmorphism. For that purpose, we established the GestaltMatcher Database (GMDB) as a reference dataset for medical images of patients with rare genetic disorders from around the world. We collected 10,980 frontal facial images - more than a quarter previously unpublished - from 8,346 patients, representing 581 rare disorders. Although the predominant ancestry is still European (67%), data from underrepresented populations have been increased considerably via global collaborations (19% Asian and 7% African). This includes previously unpublished reports for more than 40% of the African patients. The NGP analysis on this diverse dataset revealed characteristic performance differences depending on the composition of training and test sets corresponding to genetic relatedness. For clinical use of NGP, incorporating non-European patients resulted in a profound enhancement of GestaltMatcher performance. The top-5 accuracy rate increased by +11.29%. Importantly, this improvement in delineating the correct disorder from a facial portrait was achieved without decreasing the performance on European patients. By design, GMDB complies with the FAIR principles by rendering the curated medical data findable, accessible, interoperable, and reusable. This means GMDB can also serve as data for training and benchmarking. In summary, our study on facial dysmorphism on a global sample revealed a considerable cross ancestral phenotypic variability confounding NGP that should be counteracted by international efforts for increasing data diversity. GMDB wi
- Published
- 2024
11. Bi-allelic ACBD6 variants lead to a neurodevelopmental syndrome with progressive and complex movement disorders
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Sub Biomol.Mass Spectrometry & Proteom., Biomolecular Mass Spectrometry and Proteomics, Kaiyrzhanov, Rauan, Rad, Aboulfazl, Lin, Sheng-Jia, Bertoli-Avella, Aida, Kallemeijn, Wouter W, Godwin, Annie, Zaki, Maha S, Huang, Kevin, Lau, Tracy, Petree, Cassidy, Efthymiou, Stephanie, Ghayoor Karimiani, Ehsan, Hempel, Maja, Normand, Elizabeth A, Rudnik-Schöneborn, Sabine, Schatz, Ulrich A, Baggelaar, Marc P, Ilyas, Muhammad, Sultan, Tipu, Alvi, Javeria Raza, Ganieva, Manizha, Fowler, Ben, Aanicai, Ruxandra, Akay Tayfun, Gulsen, Al Saman, Abdulaziz, Alswaid, Abdulrahman, Amiri, Nafise, Asilova, Nilufar, Shotelersuk, Vorasuk, Yeetong, Patra, Azam, Matloob, Babaei, Meisam, Bahrami Monajemi, Gholamreza, Mohammadi, Pouria, Samie, Saeed, Banu, Selina Husna, Basto, Jorge Pinto, Kortüm, Fanny, Bauer, Mislen, Bauer, Peter, Beetz, Christian, Garshasbi, Masoud, Hameed Issa, Awatif, Eyaid, Wafaa, Ahmed, Hind, Hashemi, Narges, Hassanpour, Kazem, Herman, Isabella, Ibrohimov, Sherozjon, Abdul-Majeed, Ban A, Imdad, Maria, Isrofilov, Maksudjon, Kaiyal, Qassem, Khan, Suliman, Kirmse, Brian, Koster, Janet, Lourenço, Charles Marques, Mitani, Tadahiro, Moldovan, Oana, Murphy, David, Najafi, Maryam, Pehlivan, Davut, Rocha, Maria Eugenia, Salpietro, Vincenzo, Schmidts, Miriam, Shalata, Adel, Mahroum, Mohammad, Talbeya, Jawabreh Kassem, Taylor, Robert W, Vazquez, Dayana, Vetro, Annalisa, Waterham, Hans R, Zaman, Mashaya, Schrader, Tina A, Chung, Wendy K, Guerrini, Renzo, Lupski, James R, Gleeson, Joseph, Suri, Mohnish, Jamshidi, Yalda, Bhatia, Kailash P, Vona, Barbara, Schrader, Michael, Severino, Mariasavina, Guille, Matthew, Tate, Edward W, Varshney, Gaurav K, Houlden, Henry, Maroofian, Reza, Sub Biomol.Mass Spectrometry & Proteom., Biomolecular Mass Spectrometry and Proteomics, Kaiyrzhanov, Rauan, Rad, Aboulfazl, Lin, Sheng-Jia, Bertoli-Avella, Aida, Kallemeijn, Wouter W, Godwin, Annie, Zaki, Maha S, Huang, Kevin, Lau, Tracy, Petree, Cassidy, Efthymiou, Stephanie, Ghayoor Karimiani, Ehsan, Hempel, Maja, Normand, Elizabeth A, Rudnik-Schöneborn, Sabine, Schatz, Ulrich A, Baggelaar, Marc P, Ilyas, Muhammad, Sultan, Tipu, Alvi, Javeria Raza, Ganieva, Manizha, Fowler, Ben, Aanicai, Ruxandra, Akay Tayfun, Gulsen, Al Saman, Abdulaziz, Alswaid, Abdulrahman, Amiri, Nafise, Asilova, Nilufar, Shotelersuk, Vorasuk, Yeetong, Patra, Azam, Matloob, Babaei, Meisam, Bahrami Monajemi, Gholamreza, Mohammadi, Pouria, Samie, Saeed, Banu, Selina Husna, Basto, Jorge Pinto, Kortüm, Fanny, Bauer, Mislen, Bauer, Peter, Beetz, Christian, Garshasbi, Masoud, Hameed Issa, Awatif, Eyaid, Wafaa, Ahmed, Hind, Hashemi, Narges, Hassanpour, Kazem, Herman, Isabella, Ibrohimov, Sherozjon, Abdul-Majeed, Ban A, Imdad, Maria, Isrofilov, Maksudjon, Kaiyal, Qassem, Khan, Suliman, Kirmse, Brian, Koster, Janet, Lourenço, Charles Marques, Mitani, Tadahiro, Moldovan, Oana, Murphy, David, Najafi, Maryam, Pehlivan, Davut, Rocha, Maria Eugenia, Salpietro, Vincenzo, Schmidts, Miriam, Shalata, Adel, Mahroum, Mohammad, Talbeya, Jawabreh Kassem, Taylor, Robert W, Vazquez, Dayana, Vetro, Annalisa, Waterham, Hans R, Zaman, Mashaya, Schrader, Tina A, Chung, Wendy K, Guerrini, Renzo, Lupski, James R, Gleeson, Joseph, Suri, Mohnish, Jamshidi, Yalda, Bhatia, Kailash P, Vona, Barbara, Schrader, Michael, Severino, Mariasavina, Guille, Matthew, Tate, Edward W, Varshney, Gaurav K, Houlden, Henry, and Maroofian, Reza
- Published
- 2024
12. Genetische Diagnostik vor assistierter Reproduktion – Empfehlungen der neuen S2k-Leitlinie 2019
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Rudnik-Schöneborn, Sabine, Tüttelmann, Frank, and Zschocke, Johannes
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- 2020
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13. Loss of function mutations in GEMIN5 cause a neurodevelopmental disorder
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Kour, Sukhleen, Rajan, Deepa S., Fortuna, Tyler R., Anderson, Eric N., Ward, Caroline, Lee, Youngha, Lee, Sangmoon, Shin, Yong Beom, Chae, Jong-Hee, Choi, Murim, Siquier, Karine, Cantagrel, Vincent, Amiel, Jeanne, Stolerman, Elliot S., Barnett, Sarah S., Cousin, Margot A., Castro, Diana, McDonald, Kimberly, Kirmse, Brian, Nemeth, Andrea H., Rajasundaram, Dhivyaa, Innes, A. Micheil, Lynch, Danielle, Frosk, Patrick, Collins, Abigail, Gibbons, Melissa, Yang, Michele, Desguerre, Isabelle, Boddaert, Nathalie, Gitiaux, Cyril, Rydning, Siri Lynne, Selmer, Kaja K., Urreizti, Roser, Garcia-Oguiza, Alberto, Osorio, Andrés Nascimento, Verdura, Edgard, Pujol, Aurora, McCurry, Hannah R., Landers, John E., Agnihotri, Sameer, Andriescu, E. Corina, Moody, Shade B., Phornphutkul, Chanika, Sacoto, Maria J. Guillen, Begtrup, Amber, Houlden, Henry, Kirschner, Janbernd, Schorling, David, Rudnik-Schöneborn, Sabine, Strom, Tim M., Leiz, Steffen, Juliette, Kali, Richardson, Randal, Yang, Ying, Zhang, Yuehua, Wang, Minghui, Wang, Jia, Wang, Xiaodong, Platzer, Konrad, Donkervoort, Sandra, Bönnemann, Carsten G., Wagner, Matias, Issa, Mahmoud Y., Elbendary, Hasnaa M., Stanley, Valentina, Maroofian, Reza, Gleeson, Joseph G., Zaki, Maha S., Senderek, Jan, and Pandey, Udai Bhan
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- 2021
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14. High mutation detection rates in cerebral cavernous malformation upon stringent inclusion criteria: one‐third of probands are minors
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Spiegler, Stefanie, Najm, Juliane, Liu, Jian, Gkalympoudis, Stephanie, Schröder, Winnie, Borck, Guntram, Brockmann, Knut, Elbracht, Miriam, Fauth, Christine, Ferbert, Andreas, Freudenberg, Leonie, Grasshoff, Ute, Hellenbroich, Yorck, Henn, Wolfram, Hoffjan, Sabine, Hüning, Irina, Korenke, G Christoph, Kroisel, Peter M, Kunstmann, Erdmute, Mair, Martina, Munk-Schulenburg, Susanne, Nikoubashman, Omid, Pauli, Silke, Rudnik-Schöneborn, Sabine, Sudholt, Irene, Sure, Ulrich, Tinschert, Sigrid, Wiednig, Michaela, Zoll, Barbara, Ginsberg, Mark H, and Felbor, Ute
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Stroke ,Genetic Testing ,Neurosciences ,Rare Diseases ,Brain Disorders ,Clinical Research ,Genetics ,2.1 Biological and endogenous factors ,Aetiology ,Age at disease onset ,CCM1 ,CCM2 ,CCM3 ,cerebral cavernous malformation ,HEG1 ,mutation detection rate ,predictive testing ,Medicinal and Biomolecular Chemistry ,Clinical Sciences - Abstract
Cerebral cavernous malformations (CCM) are prevalent vascular malformations occurring in familial autosomal dominantly inherited or isolated forms. Once CCM are diagnosed by magnetic resonance imaging, the indication for genetic testing requires either a positive family history of cavernous lesions or clinical symptoms such as chronic headaches, epilepsy, neurological deficits, and hemorrhagic stroke or the occurrence of multiple lesions in an isolated case. Following these inclusion criteria, the mutation detection rates in a consecutive series of 105 probands were 87% for familial and 57% for isolated cases. Thirty-one novel mutations were identified with a slight shift towards proportionally more CCM3 mutations carriers than previously published (CCM1: 60%, CCM2: 18%, CCM3: 22%). In-frame deletions and exonic missense variants requiring functional analyses to establish their pathogenicity were rare: An in-frame deletion within the C-terminal FERM domain of CCM1 resulted in decreased protein expression and impaired binding to the transmembrane protein heart of glass (HEG1). Notably, 20% of index cases carrying a CCM mutation were below age 10 and 33% below age 18 when referred for genetic testing. Since fulminant disease courses during the first years of life were observed in CCM1 and CCM3 mutation carriers, predictive testing of minor siblings became an issue.
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- 2014
15. Bi-allelic ACBD6 variants lead to a neurodevelopmental syndrome with progressive and complex movement disorders
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Kaiyrzhanov, Rauan, primary, Rad, Aboulfazl, additional, Lin, Sheng-Jia, additional, Bertoli-Avella, Aida, additional, Kallemeijn, Wouter W, additional, Godwin, Annie, additional, Zaki, Maha S, additional, Huang, Kevin, additional, Lau, Tracy, additional, Petree, Cassidy, additional, Efthymiou, Stephanie, additional, Ghayoor Karimiani, Ehsan, additional, Hempel, Maja, additional, Normand, Elizabeth A, additional, Rudnik-Schöneborn, Sabine, additional, Schatz, Ulrich A, additional, Baggelaar, Marc P, additional, Ilyas, Muhammad, additional, Sultan, Tipu, additional, Alvi, Javeria Raza, additional, Ganieva, Manizha, additional, Fowler, Ben, additional, Aanicai, Ruxandra, additional, Akay Tayfun, Gulsen, additional, Al Saman, Abdulaziz, additional, Alswaid, Abdulrahman, additional, Amiri, Nafise, additional, Asilova, Nilufar, additional, Shotelersuk, Vorasuk, additional, Yeetong, Patra, additional, Azam, Matloob, additional, Babaei, Meisam, additional, Bahrami Monajemi, Gholamreza, additional, Mohammadi, Pouria, additional, Samie, Saeed, additional, Banu, Selina Husna, additional, Basto, Jorge Pinto, additional, Kortüm, Fanny, additional, Bauer, Mislen, additional, Bauer, Peter, additional, Beetz, Christian, additional, Garshasbi, Masoud, additional, Hameed Issa, Awatif, additional, Eyaid, Wafaa, additional, Ahmed, Hind, additional, Hashemi, Narges, additional, Hassanpour, Kazem, additional, Herman, Isabella, additional, Ibrohimov, Sherozjon, additional, Abdul-Majeed, Ban A, additional, Imdad, Maria, additional, Isrofilov, Maksudjon, additional, Kaiyal, Qassem, additional, Khan, Suliman, additional, Kirmse, Brian, additional, Koster, Janet, additional, Lourenço, Charles Marques, additional, Mitani, Tadahiro, additional, Moldovan, Oana, additional, Murphy, David, additional, Najafi, Maryam, additional, Pehlivan, Davut, additional, Rocha, Maria Eugenia, additional, Salpietro, Vincenzo, additional, Schmidts, Miriam, additional, Shalata, Adel, additional, Mahroum, Mohammad, additional, Talbeya, Jawabreh Kassem, additional, Taylor, Robert W, additional, Vazquez, Dayana, additional, Vetro, Annalisa, additional, Waterham, Hans R, additional, Zaman, Mashaya, additional, Schrader, Tina A, additional, Chung, Wendy K, additional, Guerrini, Renzo, additional, Lupski, James R, additional, Gleeson, Joseph, additional, Suri, Mohnish, additional, Jamshidi, Yalda, additional, Bhatia, Kailash P, additional, Vona, Barbara, additional, Schrader, Michael, additional, Severino, Mariasavina, additional, Guille, Matthew, additional, Tate, Edward W, additional, Varshney, Gaurav K, additional, Houlden, Henry, additional, and Maroofian, Reza, additional
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- 2023
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16. Mutations in the RNA exosome component gene EXOSC3 cause pontocerebellar hypoplasia and spinal motor neuron degeneration
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Wan, Jijun, Yourshaw, Michael, Mamsa, Hafsa, Rudnik-Schöneborn, Sabine, Menezes, Manoj P, Hong, Ji Eun, Leong, Derek W, Senderek, Jan, Salman, Michael S, Chitayat, David, Seeman, Pavel, von Moers, Arpad, Graul-Neumann, Luitgard, Kornberg, Andrew J, Castro-Gago, Manuel, Sobrido, María-Jesús, Sanefuji, Masafumi, Shieh, Perry B, Salamon, Noriko, Kim, Ronald C, Vinters, Harry V, Chen, Zugen, Zerres, Klaus, Ryan, Monique M, Nelson, Stanley F, and Jen, Joanna C
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Biological Sciences ,Genetics ,Clinical Research ,Pediatric ,Neurosciences ,Neurodegenerative ,Neurological ,Animals ,Cerebellum ,Exosome Multienzyme Ribonuclease Complex ,Exosomes ,Gene Knockdown Techniques ,Humans ,Motor Neurons ,Nerve Degeneration ,Olivopontocerebellar Atrophies ,Pons ,RNA ,RNA-Binding Proteins ,Spinal Nerves ,Zebrafish ,Medical and Health Sciences ,Developmental Biology ,Agricultural biotechnology ,Bioinformatics and computational biology - Abstract
RNA exosomes are multi-subunit complexes conserved throughout evolution and are emerging as the major cellular machinery for processing, surveillance and turnover of a diverse spectrum of coding and noncoding RNA substrates essential for viability. By exome sequencing, we discovered recessive mutations in EXOSC3 (encoding exosome component 3) in four siblings with infantile spinal motor neuron disease, cerebellar atrophy, progressive microcephaly and profound global developmental delay, consistent with pontocerebellar hypoplasia type 1 (PCH1; MIM 607596). We identified mutations in EXOSC3 in an additional 8 of 12 families with PCH1. Morpholino knockdown of exosc3 in zebrafish embryos caused embryonic maldevelopment, resulting in small brain size and poor motility, reminiscent of human clinical features, and these defects were largely rescued by co-injection with wild-type but not mutant exosc3 mRNA. These findings represent the first example of an RNA exosome core component gene that is responsible for a human disease and further implicate dysregulation of RNA processing in cerebellar and spinal motor neuron maldevelopment and degeneration.
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- 2012
17. Hemizygous variants in protein phosphatase 1 regulatory subunit 3F (PPP1R3F) are associated with a neurodevelopmental disorder characterized by developmental delay, intellectual disability and autistic features
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Liu, Zhigang, primary, Xin, Baozhong, additional, Smith, Iris N, additional, Sency, Valerie, additional, Szekely, Julia, additional, Alkelai, Anna, additional, Shuldiner, Alan, additional, Efthymiou, Stephanie, additional, Rajabi, Farrah, additional, Coury, Stephanie, additional, Brownstein, Catherine A, additional, Rudnik-Schöneborn, Sabine, additional, Bruel, Ange-Line, additional, Thevenon, Julien, additional, Zeidler, Shimriet, additional, Jayakar, Parul, additional, Schmidt, Axel, additional, Cremer, Kirsten, additional, Engels, Hartmut, additional, Peters, Sophia O, additional, Zaki, Maha S, additional, Duan, Ruizhi, additional, Zhu, Changlian, additional, Xu, Yiran, additional, Gao, Chao, additional, Sepulveda-Morales, Tania, additional, Maroofian, Reza, additional, Alkhawaja, Issam A, additional, Khawaja, Mariam, additional, Alhalasah, Hunaida, additional, Houlden, Henry, additional, Madden, Jill A, additional, Turchetti, Valentina, additional, Marafi, Dana, additional, Agrawal, Pankaj B, additional, Schatz, Ulrich, additional, Rotenberg, Ari, additional, Rotenberg, Joshua, additional, Mancini, Grazia M S, additional, Bakhtiari, Somayeh, additional, Kruer, Michael, additional, Thiffault, Isabelle, additional, Hirsch, Steffen, additional, Hempel, Maja, additional, Stühn, Lara G, additional, Haack, Tobias B, additional, Posey, Jennifer E, additional, Lupski, James R, additional, Lee, Hyunpil, additional, Sarn, Nicholas B, additional, Eng, Charis, additional, Gonzaga-Jauregui, Claudia, additional, Zhang, Bin, additional, and Wang, Heng, additional
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- 2023
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18. Recurrent Miscarriage: Diagnostic and Therapeutic Procedures. Guideline of the DGGG, OEGGG and SGGG (S2k-Level, AWMF Registry No. 015/050, May 2022)
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Toth, Bettina, Bohlmann, Michael, Hancke, Katharina, Kuon, Ruben, Nawroth, Frank, von Otte, Sören, Rogenhofer, Nina, Rudnik-Schöneborn, Sabine, Schleußner, Ekkehard, Tempfer, Clemens, Vomstein, Kilian, Wischmann, Tewes, von Wolff, Michael, Würfel, Wolfgang, and Zschocke, Johannes
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Maternity and Midwifery ,Obstetrics and Gynecology - Abstract
Purpose The aim of this guideline is to standardize the diagnosis and therapy of recurrent miscarriage (RM) using evidence from the recent literature. This is done by using consistent definitions, objective evaluations and standardized treatment protocols. Methods When this guideline was compiled, special consideration was given to previous recommendations in prior versions of this guideline and the recommendations of the European Society of Human Reproduction and Embryology, the Royal College of Obstetricians and Gynecologists, the American College of Obstetricians and Gynecologists and the American Society for Reproductive Medicine, and a detailed individual search of the literature about the different topics was carried out. Recommendations Recommendations about the diagnostic and therapeutic procedures offered to couples with RM were developed based on the international literature. Special attention was paid to known risk factors such as chromosomal, anatomical, endocrinological, physiological coagulation, psychological, infectious and immune disorders. Recommendations were also developed for those cases where investigations are unable to find any abnormality (idiopathic RM).
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- 2022
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19. The genetic landscape of axonal neuropathies in the middle-aged and elderly: Focus on MME
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Senderek, Jan, Lassuthova, Petra, Kabzińska, Dagmara, Abreu, Lisa, Baets, Jonathan, Beetz, Christian, Braathen, Geir J., Brenner, David, Dalton, Joline, Dankwa, Lois, Deconinck, Tine, De Jonghe, Peter, Dräger, Bianca, Eggermann, Katja, Ellis, Melina, Fischer, Carina, Stojkovic, Tanya, Herrmann, David N., Horvath, Rita, Høyer, Helle, Iglseder, Stephan, Kennerson, Marina, Kinslechner, Katharina, Kohler, Jennefer N., Kurth, Ingo, Laing, Nigel G., Lamont, Phillipa J., N. Löscher, Wolfgang, Ludolph, Albert, Marques, Wilson, Jr, Nicholson, Garth, Ong, Royston, Petri, Susanne, Ravenscroft, Gianina, Rebelo, Adriana, Ricci, Giulia, Rudnik-Schöneborn, Sabine, Schirmacher, Anja, Schlotter-Weigel, Beate, Schoels, Ludger, Schüle, Rebecca, Synofzik, Matthis, Francou, Bruno, Strom, Tim M., Wagner, Johannes, Walk, David, Wanschitz, Julia, Weinmann, Daniela, Weishaupt, Jochen, Wiessner, Manuela, Windhager, Reinhard, Young, Peter, Züchner, Stephan, Toegel, Stefan, Seeman, Pavel, Kochański, Andrzej, and Auer-Grumbach, Michaela
- Published
- 2020
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20. Biallelic MED27 variants lead to variable ponto-cerebello-lental degeneration with movement disorders
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Maroofian, Reza, primary, Kaiyrzhanov, Rauan, additional, Cali, Elisa, additional, Zamani, Mina, additional, Zaki, Maha S, additional, Ferla, Matteo, additional, Tortora, Domenico, additional, Sadeghian, Saeid, additional, Saadi, Saadia Maryam, additional, Abdullah, Uzma, additional, Karimiani, Ehsan Ghayoor, additional, Efthymiou, Stephanie, additional, Yeşil, Gözde, additional, Alavi, Shahryar, additional, Al Shamsi, Aisha M, additional, Tajsharghi, Homa, additional, Abdel-Hamid, Mohamed S, additional, Saadi, Nebal Waill, additional, Al Mutairi, Fuad, additional, Alabdi, Lama, additional, Beetz, Christian, additional, Ali, Zafar, additional, Toosi, Mehran Beiraghi, additional, Rudnik-Schöneborn, Sabine, additional, Babaei, Meisam, additional, Isohanni, Pirjo, additional, Muhammad, Jameel, additional, Khan, Sheraz, additional, Al Shalan, Maha, additional, Hickey, Scott E, additional, Marom, Daphna, additional, Elhanan, Emil, additional, Kurian, Manju A, additional, Marafi, Dana, additional, Saberi, Alihossein, additional, Hamid, Mohammad, additional, Spaull, Robert, additional, Meng, Linyan, additional, Lalani, Seema, additional, Maqbool, Shazia, additional, Rahman, Fatima, additional, Seeger, Jürgen, additional, Palculict, Timothy Blake, additional, Lau, Tracy, additional, Murphy, David, additional, Mencacci, Niccolo Emanuele, additional, Steindl, Katharina, additional, Begemann, Anais, additional, Rauch, Anita, additional, Akbas, Sinan, additional, Aslanger, Ayça Dilruba, additional, Salpietro, Vincenzo, additional, Yousaf, Hammad, additional, Ben-Shachar, Shay, additional, Ejeskär, Katarina, additional, Al Aqeel, Aida I, additional, High, Frances A, additional, Armstrong-Javors, Amy E, additional, Zahraei, Seyed Mohammadsaleh, additional, Seifi, Tahereh, additional, Zeighami, Jawaher, additional, Shariati, Gholamreza, additional, Sedaghat, Alireza, additional, Asl, Samaneh Noroozi, additional, Shahrooei, Mohmmad, additional, Zifarelli, Giovanni, additional, Burglen, Lydie, additional, Ravelli, Claudia, additional, Zschocke, Johannes, additional, Schatz, Ulrich A, additional, Ghavideldarestani, Maryam, additional, Kamel, Walaa A, additional, Van Esch, Hilde, additional, Hackenberg, Annette, additional, Taylor, Jenny C, additional, Al-Gazali, Lihadh, additional, Bauer, Peter, additional, Gleeson, Joseph J, additional, Alkuraya, Fowzan Sami, additional, Lupski, James R, additional, Galehdari, Hamid, additional, Azizimalamiri, Reza, additional, Chung, Wendy K, additional, Baig, Shahid Mahmood, additional, Houlden, Henry, additional, and Severino, Mariasavina, additional
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- 2023
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21. GestaltMatcher Database - A global reference for the facial phenotypic variability of rare human diseases
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Lesmann, Hellen, primary, Hustinx, Alexander, additional, Moosa, Shahida, additional, Marchi, Elaine, additional, Caro, Pilar, additional, Abdelrazek, Ibrahim M., additional, Pantel, Jean Tori, additional, Klinkhammer, Hannah, additional, ten Hagen, Merle, additional, Kamphans, Tom, additional, Meiswinkel, Wolfgang, additional, Li, Jing-Mei, additional, Javanmardi, Behnam, additional, Knaus, Alexej, additional, Uwineza, Annette, additional, Knopp, Cordula, additional, Tkemaladze, Tinatin, additional, Elbracht, Miriam, additional, Mattern, Larissa, additional, Jamra, Rami Abou, additional, Velmans, Clara, additional, Strehlow, Vincent, additional, Goel, Himanshu, additional, Nunes, Beatriz Carvalho, additional, Vilella, Thainá, additional, Pinheiro, Isabel Furquim, additional, Kim, Chong Ae, additional, Melaragno, Maria Isabel, additional, Barakat, Tahsin Stefan, additional, Nabil, Amira, additional, Suh, Julia, additional, Averdunk, Luisa, additional, Ekure, Ekanem, additional, Graziano, Claudio, additional, Phowthongkum, Prasit, additional, Güzel, Nergis, additional, Haack, Tobias B., additional, Brunet, Theresa, additional, Rudnik-Schöneborn, Sabine, additional, Platzer, Konrad, additional, Borovikov, Artem, additional, Schnabel, Franziska, additional, Heuft, Lara, additional, Herrmann, Vera, additional, Martinez-Monseny, Antonio F., additional, Höller, Matthias, additional, Alaaeldin, Khoshoua, additional, Jezela-Stanek, Aleksandra, additional, Mohamed, Amal, additional, Lasa-Aranzasti, Amaia, additional, Sayer, John A., additional, Hu, Ping, additional, Hanchard, Suzanna E. Ledgister, additional, Elmakkawy, Gehad, additional, Safwat, Sylvia, additional, Ebstein, Frédéric, additional, Krüger, Elke, additional, Küry, Sébastien, additional, Arlt, Annabelle, additional, Marbach, Felix, additional, Netzer, Christian, additional, Kaptain, Sophia, additional, Weiland, Hannah, additional, Li, Dong, additional, Dupuis, Lucie, additional, Mendoza-Londono, Roberto, additional, Houge, Sofia Douzgou, additional, Weis, Denisa, additional, Chung, Brian Hon-Yin, additional, Mak, Christopher C.Y., additional, Devriendt, Koen, additional, Gripp, Karen W., additional, Mücke, Martin, additional, Verloes, Alain, additional, Schaaf, Christian P., additional, Nellåker, Christoffer, additional, Solomon, Benjamin D., additional, Waikel, Rebekah L., additional, Nöthen, Markus M., additional, Abdalla, Ebtesam, additional, Lyon, Gholson J., additional, Krawitz, Peter M., additional, and Hsieh, Tzung-Chien, additional
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- 2023
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22. Evidence of mild founder LMOD3 mutations causing nemaline myopathy 10 in Germany and Austria
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Schatz, Ulrich A., Weiss, Simone, Wenninger, Stephan, Schoser, Benedikt, Muss, Wolfgang H., Bittner, Reginald E., Schmidt, Wolfgang M., Schossig, Anna S., Rudnik-Schöneborn, Sabine, and Baumann, Matthias
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- 2018
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23. Biallelic MED27 variants lead to variable ponto-cerebello-lental degeneration with movement disorders
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Maroofian, Reza; https://orcid.org/0000-0001-6763-1542, Kaiyrzhanov, Rauan; https://orcid.org/0000-0003-1640-4010, Cali, Elisa, Zamani, Mina; https://orcid.org/0000-0002-7005-3787, Zaki, Maha S, Ferla, Matteo; https://orcid.org/0000-0002-5508-4673, Tortora, Domenico; https://orcid.org/0000-0002-5621-4046, Sadeghian, Saeid; https://orcid.org/0000-0002-7935-3401, Saadi, Saadia Maryam, Abdullah, Uzma, Ghayoor Karimiani, Ehsan, Efthymiou, Stephanie; https://orcid.org/0000-0003-4900-9877, Yeşil, Gözde, Alavi, Shahryar, Al Shamsi, Aisha M, Tajsharghi, Homa, Abdel-Hamid, Mohamed S, Saadi, Nebal Waill, Al Mutairi, Fuad, Alabdi, Lama, Beetz, Christian, Ali, Zafar, Toosi, Mehran Beiraghi, Rudnik-Schöneborn, Sabine; https://orcid.org/0000-0001-8332-0672, Babaei, Meisam, Isohanni, Pirjo; https://orcid.org/0000-0002-0156-1614, Muhammad, Jameel, Sheraz, Khan; https://orcid.org/0000-0003-3207-4074, Al Shalan, Maha, Hickey, Scott E, et al, Steindl, Katharina; https://orcid.org/0000-0002-4425-3072, Begemann, Anaïs; https://orcid.org/0000-0001-6762-0819, Rauch, Anita; https://orcid.org/0000-0003-2930-3163, Maroofian, Reza; https://orcid.org/0000-0001-6763-1542, Kaiyrzhanov, Rauan; https://orcid.org/0000-0003-1640-4010, Cali, Elisa, Zamani, Mina; https://orcid.org/0000-0002-7005-3787, Zaki, Maha S, Ferla, Matteo; https://orcid.org/0000-0002-5508-4673, Tortora, Domenico; https://orcid.org/0000-0002-5621-4046, Sadeghian, Saeid; https://orcid.org/0000-0002-7935-3401, Saadi, Saadia Maryam, Abdullah, Uzma, Ghayoor Karimiani, Ehsan, Efthymiou, Stephanie; https://orcid.org/0000-0003-4900-9877, Yeşil, Gözde, Alavi, Shahryar, Al Shamsi, Aisha M, Tajsharghi, Homa, Abdel-Hamid, Mohamed S, Saadi, Nebal Waill, Al Mutairi, Fuad, Alabdi, Lama, Beetz, Christian, Ali, Zafar, Toosi, Mehran Beiraghi, Rudnik-Schöneborn, Sabine; https://orcid.org/0000-0001-8332-0672, Babaei, Meisam, Isohanni, Pirjo; https://orcid.org/0000-0002-0156-1614, Muhammad, Jameel, Sheraz, Khan; https://orcid.org/0000-0003-3207-4074, Al Shalan, Maha, Hickey, Scott E, et al, Steindl, Katharina; https://orcid.org/0000-0002-4425-3072, Begemann, Anaïs; https://orcid.org/0000-0001-6762-0819, and Rauch, Anita; https://orcid.org/0000-0003-2930-3163
- Abstract
MED27 is a subunit of the Mediator multiprotein complex, which is involved in transcriptional regulation. Biallelic MED27 variants have recently been suggested to be responsible for an autosomal recessive neurodevelopmental disorder with spasticity, cataracts, and cerebellar hypoplasia. We further delineate the clinical phenotype of MED27-related disease by characterizing the clinical and radiological features of 57 affected individuals from 30 unrelated families with biallelic MED27 variants. Utilizing exome sequencing and extensive international genetic data sharing, 39 unpublished affected individuals from 18 independent families with biallelic missense variants in MED27 have been identified (29 females, mean age at last follow-up 17±12.4 years, range 0.1-45). Follow-up and hitherto unreported clinical features were obtained from the published 12 families. Brain MRI scans from 34 cases were reviewed. MED27-related disease manifests as a broad phenotypic continuum ranging from developmental and epileptic-dyskinestic encephalopathy to variable neurodevelopmental disorder with movement abnormalities. It is characterised by mild to profound global developmental delay/intellectual disability (100%), bilateral cataracts (89%), infantile hypotonia (74%), microcephaly (62%), gait ataxia (63%), dystonia (61%), variably combined with epilepsy (50%), limb spasticity (51%), facial dysmorphism (38%), and death before reaching adulthood (16%). Brain MRI revealed cerebellar atrophy (100%), white matter volume loss (76.4%), pontine hypoplasia (47.2%), and basal ganglia atrophy with signal alterations (44.4%). Previously unreported 39 affected individuals had seven homozygous pathogenic missense MED27 variants, five of which were recurrent. An emerging genotype-phenotype correlation was observed. This study provides a comprehensive clinical-radiological description of MED27-related disease, establishes genotype-phenotype and clinical-radiological correlations, and suggests a diff
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- 2023
24. Spinale Muskelatrophien
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Rudnik-Schöneborn, Sabine and Zerres, Klaus
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- 2017
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25. [Untitled]
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Toth, Bettina, Bohlmann, Michael, Hancke, Katharina, Kuon, Ruben, Nawroth, Frank, von Otte, Sören, Rogenhofer, Nina, Rudnik-Schöneborn, Sabine, Schleußner, Ekkehard, Tempfer, Clemens, Vomstein, Kilian, Wischmann, Tewes, von Wolff, Michael, Würfel, Wolfgang, and Zschocke, Johannes
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610 Medicine & health - Abstract
Purpose The aim of this guideline is to standardize the diagnosis and therapy of recurrent miscarriage (RM) using evidence from the recent literature. This is done by using consistent definitions, objective evaluations and standardized treatment protocols. Methods When this guideline was compiled, special consideration was given to previous recommendations in prior versions of this guideline and the recommendations of the European Society of Human Reproduction and Embryology, the Royal College of Obstetricians and Gynecologists, the American College of Obstetricians and Gynecologists and the American Society for Reproductive Medicine, and a detailed individual search of the literature about the different topics was carried out. Recommendations Recommendations about the diagnostic and therapeutic procedures offered to couples with RM were developed based on the international literature. Special attention was paid to known risk factors such as chromosomal, anatomical, endocrinological, physiological coagulation, psychological, infectious and immune disorders. Recommendations were also developed for those cases where investigations are unable to find any abnormality (idiopathic RM)., Ziel Ziel der vorliegenden Leitlinie ist es, die Diagnostik und Therapie von wiederholten Spontanaborten (WSA) anhand der aktuellen Literatur evidenzbasiert zu standardisieren. Dies erfolgt unter Verwendung einheitlicher Definitionen, objektivierter Bewertungsmöglichkeiten und standardisierter Therapieprotokolle. Methoden Die Erstellung dieser Leitlinie erfolgte unter besonderer Berücksichtigung der bisherigen Empfehlungen der Vorversionen dieser Leitlinie, den Empfehlungen der European Society of Human Reproduction and Embryology, des Royal College of Obstetricians and Gynecologists, des American College of Obstetricians and Gynecologists und der American Society for Reproductive Medicine sowie einer ausführlichen individuellen Literaturrecherche zu den jeweiligen Themen. Empfehlungen Es wurden Empfehlungen zur Diagnostik und Therapie von Paaren mit WSA anhand der internationalen Literatur erarbeitet. Insbesondere wurde auf die bekannten Risikofaktoren wie chromosomale, anatomische, endokrinologische, gerinnungsphysiologische, psychologische, infektiologische und immunologische Störungen eingegangen. Aber auch für die Fälle einer unauffälligen Abklärung (idiopathische WSA) wurden Empfehlungen erarbeitet.
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- 2023
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26. Loss of tubulin deglutamylase CCP1 causes infantile‐onset neurodegeneration
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Shashi, Vandana, Magiera, Maria M, Klein, Dennis, Zaki, Maha, Schoch, Kelly, Rudnik‐Schöneborn, Sabine, Norman, Andrew, Lopes Abath Neto, Osorio, Dusl, Marina, Yuan, Xidi, Bartesaghi, Luca, De Marco, Patrizia, Alfares, Ahmed A, Marom, Ronit, Arold, Stefan T, Guzmán‐Vega, Francisco J, Pena, Loren DM, Smith, Edward C, Steinlin, Maja, Babiker, Mohamed OE, Mohassel, Payam, Foley, A Reghan, Donkervoort, Sandra, Kaur, Rupleen, Ghosh, Partha S, Stanley, Valentina, Musaev, Damir, Nava, Caroline, Mignot, Cyril, Keren, Boris, Scala, Marcello, Tassano, Elisa, Picco, Paolo, Doneda, Paola, Fiorillo, Chiara, Issa, Mahmoud Y, Alassiri, Ali, Alahmad, Ahmed, Gerard, Amanda, Liu, Pengfei, Yang, Yaping, Ertl‐Wagner, Birgit, Kranz, Peter G, Wentzensen, Ingrid M, Stucka, Rolf, Stong, Nicholas, Allen, Andrew S, Goldstein, David B, Schoser, Benedikt, Rösler, Kai M, Alfadhel, Majid, Capra, Valeria, Chrast, Roman, Strom, Tim M, Kamsteeg, Erik‐Jan, Bönnemann, Carsten G, Gleeson, Joseph G, Martini, Rudolf, Janke, Carsten, and Senderek, Jan
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- 2018
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27. Familial acute aortic dissection associated with a novel ACTA2 germline variant
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Strecker, Thomas, primary, Wiesmueller, Felix, additional, Rudnik-Schöneborn, Sabine, additional, Hoyer, Juliane, additional, Reis, André, additional, Weyand, Michael, additional, and Agaimy, Abbas, additional
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- 2022
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28. Preconception carrier screening as an alternative reproductive option prior to newborn screening for severe recessive disorders
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Rudnik-Schöneborn, Sabine, primary and Zerres, Klaus, additional
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- 2022
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29. Verleihung der GfH-Ehrenmitgliedschaft 2024 an Prof. Dr. med. Klaus Zerres.
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Rudnik-Schöneborn, Sabine
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RATS , *WIT & humor , *SEMINARS - Abstract
Prof. Dr. med. Klaus Zerres has been awarded the honorary membership of the Society for Human Genetics (GfH) in recognition of his contributions to the field. He has had a long and active career in human genetics, with a particular focus on cystic kidney diseases and spinal muscular atrophy. Prof. Zerres has published over 600 scientific articles, received various awards, and held numerous positions in professional organizations. He is known for his dedication to the field and his commitment to ethical and societal considerations in genetics. [Extracted from the article]
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- 2024
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30. Correction: Requirement of the acyl-CoA carrier ACBD6 in myristoylation of proteins: Activation by ligand binding and protein interaction
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Soupene, Eric, primary, Schatz, Ulrich A., additional, Rudnik-Schöneborn, Sabine, additional, and Kuypers, Frans A., additional
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- 2022
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31. A polymorphic AT-repeat causes frequent allele dropout for an MME mutational hotspot exon
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Høyer, Helle, primary, Hilmarsen, Hilde T, additional, Sunder-Plassmann, Raute, additional, Braathen, Geir J, additional, Andersen, Peter M, additional, Beetz, Christian, additional, Hacker, Sandra, additional, Holla, Øystein L, additional, Kurth, Ingo, additional, Löscher, Wolfgang N, additional, Reiter, Simone B C F, additional, Rudnik-Schöneborn, Sabine, additional, Strand, Linda, additional, Windhager, Reinhard, additional, Witsch-Baumgartner, Martina, additional, Senderek, Jan, additional, and Auer-Grumbach, Michaela, additional
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- 2022
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32. Ethische und rechtliche Aspekte im Umgang mit genetischen Zufallsbefunden – Herausforderungen und Lösungsansätze
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Rudnik-Schöneborn, Sabine, Langanke, Martin, Erdmann, Pia, and Robienski, Jürgen
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- 2014
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33. Diagnostik und Therapie von Frauen mit wiederholten Spontanaborten. Leitlinie der DGGG, OEGGG und SGGG (S2k-Level, AWMF-Registernummer 015/050, Mai 2022).
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Toth, Bettina, Bohlmann, Michael, Hancke, Katharina, Kuon, Ruben, Nawroth, Frank, von Otte, Sören, Rogenhofer, Nina, Rudnik-Schöneborn, Sabine, Schleußner, Ekkehard, Tempfer, Clemens, Vomstein, Kilian, Wischmann, Tewes, von Wolff, Michael, Würfel, Wolfgang, and Zschocke, Johannes
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- 2023
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34. Einleitung
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Langanke, Martin, primary, Erdmann, Pia, additional, Robienski, Jürgen, additional, and Rudnik-Schöneborn, Sabine, additional
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- 2015
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35. Umgang mit Zusatzbefunden in der humangenetischen Praxis
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Rudnik-Schöneborn, Sabine, primary
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- 2015
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36. Differential Diagnosis of Acquired and Hereditary Neuropathies in Children and Adolescents—Consensus-Based Practice Guidelines
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Korinthenberg, Rudolf, primary, Trollmann, Regina, additional, Plecko, Barbara, additional, Stettner, Georg M., additional, Blankenburg, Markus, additional, Weis, Joachim, additional, Schoser, Benedikt, additional, Müller-Felber, Wolfgang, additional, Lochbuehler, Nina, additional, Hahn, Gabriele, additional, and Rudnik-Schöneborn, Sabine, additional
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- 2021
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37. Genetic tests in sports medicine - many studies, little impact
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Rudnik-Schöneborn, Sabine
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- 2012
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38. Facioscapulohumeral muscular dystrophy presenting with unusual phenotypes and atypical morphological features of vacuolar myopathy
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Reilich, Peter, Schramm, Nicolai, Schoser, Benedikt, Schneiderat, Peter, Strigl-Pill, Nicola, Müller-Höcker, Josef, Kress, Wolfram, Ferbert, Andreas, Rudnik-Schöneborn, Sabine, Noth, Johannes, Lochmüller, Hanns, Weis, Joachim, and Walter, Maggie C.
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- 2010
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39. Mutations in HID1 Cause Syndromic Infantile Encephalopathy and Hypopituitarism
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Schänzer, Anne, Achleitner, Melanie T., Trümbach, Dietrich, Hubert, Laurence, Munnich, Arnold, Ahlemeyer, Barbara, AlAbdulrahim, Maha M., Greif, Philipp A., Vosberg, Sebastian, Hummer, Blake, Feichtinger, René G., Mayr, Johannes A., Wortmann, Saskia B., Aichner, Heidi, Rudnik-Schöneborn, Sabine, Ruiz, Anna, Gabau, Elisabeth, Sánchez, Jacobo Pérez, Ellard, Sian, Homfray, Tessa, Stals, Karen L., Wurst, Wolfgang, Neubauer, Bernd A., Acker, Till, Bohlander, Stefan K., Asensio, Cédric, Besmond, Claude, Alkuraya, Fowzan S., AlSayed, Moenaldeen D., Hahn, Andreas, Weber, Axel, and Justus Liebig University Giessen
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0301 basic medicine ,Male ,Pituitary gland ,Pathology ,medicine.medical_specialty ,Central nervous system ,genetics [Epilepsy] ,Hypopituitarism ,Peptide hormone ,Article ,pathology [Epilepsy] ,03 medical and health sciences ,Epilepsy ,Young Adult ,0302 clinical medicine ,Atrophy ,Exome Sequencing ,Medicine ,Humans ,ddc:610 ,genetics [Hypopituitarism] ,Exome sequencing ,Alleles ,Cerebral atrophy ,Brain Diseases ,business.industry ,genetics [Brain Diseases] ,pathology [Brain Diseases] ,Infant ,medicine.disease ,pathology [Pituitary Gland] ,ddc ,030104 developmental biology ,medicine.anatomical_structure ,Neurology ,Pituitary Gland ,Child, Preschool ,Female ,Neurology (clinical) ,pathology [Hypopituitarism] ,business ,General Economics, Econometrics and Finance ,030217 neurology & neurosurgery - Abstract
Objective Precursors of peptide hormones undergo posttranslational modifications within the trans-Golgi network (TGN). Dysfunction of proteins involved at different steps of this process cause several complex syndromes affecting the central nervous system (CNS). We aimed to clarify the genetic cause in a group of patients characterized by hypopituitarism in combination with brain atrophy, thin corpus callosum, severe developmental delay, visual impairment, and epilepsy. Methods Whole exome sequencing (WES) was performed in seven individuals of six unrelated families with these features. Postmortem histopathological and HID1 expression analysis of brain tissue and pituitary gland were conducted in one patient. Functional consequences of the homozygous HID1 variant p.R433W were investigated by Seahorse XF Assay in fibroblasts of two patients. Results Bi-allelic variants in the gene HID1 domain-containing protein 1 (HID1) were identified in all patients. Post mortem examination confirmed cerebral atrophy with enlarged lateral ventricles. Markedly reduced expression of pituitary hormones was found in pituitary gland tissue. Colocalization of HID1 protein with the TGN was not altered in fibroblasts of patients compared to controls, while the extracellular acidification rate (ECAR) upon stimulation with potassium chloride was significantly reduced in patient fibroblasts compared to controls. Interpretation Our findings indicate that mutations in HID1 cause an early infantile encephalopathy with hypopituitarism as the leading presentation, and expand the list of syndromic CNS diseases caused by interference of TGN function. This article is protected by copyright. All rights reserved.
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- 2021
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40. Low‐level mosaicism in tuberous sclerosis complex in four unrelated patients: Comparison of clinical characteristics and diagnostic pathways
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Manzanilla‐Romero, Héctor Hugo, primary, Weis, Denisa, additional, Schnaiter, Simon, additional, and Rudnik‐Schöneborn, Sabine, additional
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- 2021
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41. Mutations inHID1Cause Syndromic Infantile Encephalopathy and Hypopituitarism
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Schänzer, Anne, primary, Achleitner, Melanie T., additional, Trümbach, Dietrich, additional, Hubert, Laurence, additional, Munnich, Arnold, additional, Ahlemeyer, Barbara, additional, AlAbdulrahim, Maha M., additional, Greif, Philipp A., additional, Vosberg, Sebastian, additional, Hummer, Blake, additional, Feichtinger, René G., additional, Mayr, Johannes A., additional, Wortmann, Saskia B., additional, Aichner, Heidi, additional, Rudnik‐Schöneborn, Sabine, additional, Ruiz, Anna, additional, Gabau, Elisabeth, additional, Sánchez, Jacobo Pérez, additional, Ellard, Sian, additional, Homfray, Tessa, additional, Stals, Karen L., additional, Wurst, Wolfgang, additional, Neubauer, Bernd A., additional, Acker, Till, additional, Bohlander, Stefan K., additional, Asensio, Cédric, additional, Besmond, Claude, additional, Alkuraya, Fowzan S., additional, AlSayed, Moenaldeen D., additional, Hahn, Andreas, additional, and Weber, Axel, additional
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- 2021
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42. Do non-invasive prenatal tests promote discrimination against people with Down syndrome? What should be done?
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Zerres, Klaus, primary, Rudnik-Schöneborn, Sabine, additional, and Holzgreve, Wolfgang, additional
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- 2021
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43. Mutations of the LMNA gene can mimic autosomal dominant proximal spinal muscular atrophy
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Rudnik-Schöneborn, Sabine, Botzenhart, Elke, Eggermann, Thomas, Senderek, Jan, Schoser, Benedikt G. H., Schröder, Rolf, Wehnert, Manfred, Wirth, Brunhilde, and Zerres, Klaus
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- 2007
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44. Recurrent Spontaneous Miscarriage: a Comparison of International Guidelines
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Vomstein, Kilian, primary, Aulitzky, Anna, primary, Strobel, Laura, additional, Bohlmann, Michael, additional, Feil, Katharina, additional, Rudnik-Schöneborn, Sabine, additional, Zschocke, Johannes, additional, and Toth, Bettina, additional
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- 2021
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45. The genetic counseling profession in Austria: Stakeholders’ perspectives
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Schwaninger, Gunda, primary, Benjamin, Caroline, additional, Rudnik‐Schöneborn, Sabine, additional, and Zschocke, Johannes, additional
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- 2021
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46. Prospects and challenges for the genetic counsellor profession in the German-speaking countries: report of a workshop
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Schwaninger, Gunda, primary, Heidemann, Simone, additional, Hofmann, Wera, additional, Maurer, Tamara, additional, Mayerhanser, Katharina, additional, Ronez, Joelle, additional, Schüler, Herdit, additional, Steinmüller, Katharina, additional, Rudnik-Schöneborn, Sabine, additional, and Zschocke, Johannes, additional
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- 2021
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47. Genetic counseling and diagnostic guidelines for couples with infertility and/or recurrent miscarriage
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Wyrwoll, Margot J., primary, Rudnik-Schöneborn, Sabine, additional, and Tüttelmann, Frank, additional
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- 2021
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48. Reply: CFTR analysis should not be offered to all patients with unexplained azoospermia in the presence of normal gonadotropin levels
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Rudnik-Schöneborn, Sabine, primary, Zschocke, Johannes, additional, and Tüttelmann, Frank, additional
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- 2021
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49. Spinal Muscular Atrophies
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Rudnik-Schöneborn, Sabine, primary and Zerres, Klaus, additional
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- 2013
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50. Spinal muscular atrophy: a motor neuron disorder or a multi-organ disease?
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Shababi, Monir, Lorson, Christian L., and Rudnik-Schöneborn, Sabine S.
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- 2014
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