Exome sequencing in individuals with cardiovascular laterality defects identifies potential candidate genes

被引:0
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作者
Katinka Breuer
Korbinian M. Riedhammer
Nicole Müller
Birthe Schaidinger
Gregor Dombrowsky
Sven Dittrich
Susanne Zeidler
Ulrike M. M. Bauer
Dominik S. Westphal
Thomas Meitinger
Tikam Chand Dakal
Marc-Phillip Hitz
Johannes Breuer
Heiko Reutter
Alina C. Hilger
Julia Hoefele
机构
[1] University Hospital of Bonn,Institute of Human Genetics
[2] University Hospital of Bonn,Department of Pediatric Cardiology, Pediatric Heart Center
[3] Institute of Human Genetics,Department of Nephrology, Klinikum rechts der Isar, School of Medicine
[4] Klinikum rechts der Isar,Department of Congenital Heart Disease and Pediatric Cardiology
[5] School of Medicine,Department of Pediatric Cardiology
[6] Technical University of Munich,Pediatric Department
[7] Technical University of Munich,Department of Internal Medicine I, Klinikum rechts der Isar, School of Medicine
[8] University Hospital of Schleswig-Holstein,Department of Biotechnology
[9] University of Erlangen-Nürnberg,Division of Neonatology and Pediatric Intensive Care Medicine
[10] Asklepios clinics,undefined
[11] Competence Network for Congenital Heart Defects & National Register for Congenital Heart Defects,undefined
[12] German Center for Cardiovascular Research (DZHK),undefined
[13] DZHK (German Center for Cardiovascular Research),undefined
[14] partner site Munich Heart Alliance,undefined
[15] Technical University of Munich,undefined
[16] Mohanlal Sukhadia University Udaipur,undefined
[17] DZHK (German Centre for Cardiovascular Research) Partner Site,undefined
[18] Department of Pediatrics and Adolescent Medicine,undefined
[19] Friedrich-Alexander-University Erlangen-Nürnberg,undefined
来源
European Journal of Human Genetics | 2022年 / 30卷
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摘要
The birth prevalence of laterality defects is about 1.1/10,000 comprising different phenotypes ranging from situs inversus totalis to heterotaxy, mostly associated with complex congenital heart defects (CHD) and situs abnormalities such as intestinal malrotation, biliary atresia, asplenia, or polysplenia. A proportion of laterality defects arise in the context of primary ciliary dyskinesia (PCD) accompanied by respiratory symptoms or infertility. In this study, exome sequencing (ES) was performed in 14 case-parent trios/quattros with clinical exclusion of PCD prior to analysis. Moreover, all cases and parents underwent detailed clinical phenotyping including physical examination, echocardiography by a skilled paediatric cardiologist and abdominal ultrasound examinations not to miss mildly affected individuals. Subsequent survey of the exome data comprised filtering for monoallelic de novo, rare biallelic, and X-linked recessive variants. In two families, rare variants of uncertain significance (VUS) in PKD1L1 and ZIC3 were identified. Both genes have been associated with laterality defects. In two of the remaining families, biallelic variants in LMBRD1 and DNAH17, respectively, were prioritized. In another family, an ultra-rare de novo variant in WDR47 was found. Extensive exome survey of 2,109 single exomes of individuals with situs inversus totalis, heterotaxy, or isolated CHD identified two individuals with novel monoallelic variants in WDR47, but no further individuals with biallelic variants in DNAH17 or LMBRD1. Overall, ES of 14 case-parent trios/quattros with cardiovascular laterality defects identified rare VUS in two families in known disease-associated genes PKD1L1 and ZIC3 and suggests DNAH17, LMBRD1, and WDR47 as potential genes involved in laterality defects.
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页码:946 / 954
页数:8
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