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Exome sequencing in multiplex families with left-sided cardiac defects has high yield for disease gene discovery.

Authors :
David M Gordon
David Cunningham
Gloria Zender
Patrick J Lawrence
Jacqueline S Penaloza
Hui Lin
Sara M Fitzgerald-Butt
Katherine Myers
Tiffany Duong
Donald J Corsmeier
Jeffrey B Gaither
Harkness C Kuck
Saranga Wijeratne
Blythe Moreland
Benjamin J Kelly
Baylor-Johns Hopkins Center for Mendelian Genomics
Vidu Garg
Peter White
Kim L McBride
Source :
PLoS Genetics, Vol 18, Iss 6, p e1010236 (2022)
Publication Year :
2022
Publisher :
Public Library of Science (PLoS), 2022.

Abstract

Congenital heart disease (CHD) is a common group of birth defects with a strong genetic contribution to their etiology, but historically the diagnostic yield from exome studies of isolated CHD has been low. Pleiotropy, variable expressivity, and the difficulty of accurately phenotyping newborns contribute to this problem. We hypothesized that performing exome sequencing on selected individuals in families with multiple members affected by left-sided CHD, then filtering variants by population frequency, in silico predictive algorithms, and phenotypic annotations from publicly available databases would increase this yield and generate a list of candidate disease-causing variants that would show a high validation rate. In eight of the nineteen families in our study (42%), we established a well-known gene/phenotype link for a candidate variant or performed confirmation of a candidate variant's effect on protein function, including variants in genes not previously described or firmly established as disease genes in the body of CHD literature: BMP10, CASZ1, ROCK1 and SMYD1. Two plausible variants in different genes were found to segregate in the same family in two instances suggesting oligogenic inheritance. These results highlight the need for functional validation and demonstrate that in the era of next-generation sequencing, multiplex families with isolated CHD can still bring high yield to the discovery of novel disease genes.

Subjects

Subjects :
Genetics
QH426-470

Details

Language :
English
ISSN :
15537390 and 15537404
Volume :
18
Issue :
6
Database :
Directory of Open Access Journals
Journal :
PLoS Genetics
Publication Type :
Academic Journal
Accession number :
edsdoj.6e68cf7a081a4dec8fa9470de632ba33
Document Type :
article
Full Text :
https://doi.org/10.1371/journal.pgen.1010236