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De Novo and Rare Variants at Multiple Loci Support the Oligogenic Origins of Atrioventricular Septal Heart Defects

Congenital heart disease (CHD) has a complex genetic etiology, and recent studies suggest that high penetrance de novo mutations may account for only a small fraction of disease. In a multi-institutional cohort surveyed by exome sequencing, combining analysis of 987 individuals (discovery cohort of...

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Autores principales: Priest, James R., Osoegawa, Kazutoyo, Mohammed, Nebil, Nanda, Vivek, Kundu, Ramendra, Schultz, Kathleen, Lammer, Edward J., Girirajan, Santhosh, Scheetz, Todd, Waggott, Daryl, Haddad, Francois, Reddy, Sushma, Bernstein, Daniel, Burns, Trudy, Steimle, Jeffrey D., Yang, Xinan H., Moskowitz, Ivan P., Hurles, Matthew, Lifton, Richard P., Nickerson, Debbie, Bamshad, Michael, Eichler, Evan E., Mital, Seema, Sheffield, Val, Quertermous, Thomas, Gelb, Bruce D., Portman, Michael, Ashley, Euan A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4825975/
https://www.ncbi.nlm.nih.gov/pubmed/27058611
http://dx.doi.org/10.1371/journal.pgen.1005963
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author Priest, James R.
Osoegawa, Kazutoyo
Mohammed, Nebil
Nanda, Vivek
Kundu, Ramendra
Schultz, Kathleen
Lammer, Edward J.
Girirajan, Santhosh
Scheetz, Todd
Waggott, Daryl
Haddad, Francois
Reddy, Sushma
Bernstein, Daniel
Burns, Trudy
Steimle, Jeffrey D.
Yang, Xinan H.
Moskowitz, Ivan P.
Hurles, Matthew
Lifton, Richard P.
Nickerson, Debbie
Bamshad, Michael
Eichler, Evan E.
Mital, Seema
Sheffield, Val
Quertermous, Thomas
Gelb, Bruce D.
Portman, Michael
Ashley, Euan A.
author_facet Priest, James R.
Osoegawa, Kazutoyo
Mohammed, Nebil
Nanda, Vivek
Kundu, Ramendra
Schultz, Kathleen
Lammer, Edward J.
Girirajan, Santhosh
Scheetz, Todd
Waggott, Daryl
Haddad, Francois
Reddy, Sushma
Bernstein, Daniel
Burns, Trudy
Steimle, Jeffrey D.
Yang, Xinan H.
Moskowitz, Ivan P.
Hurles, Matthew
Lifton, Richard P.
Nickerson, Debbie
Bamshad, Michael
Eichler, Evan E.
Mital, Seema
Sheffield, Val
Quertermous, Thomas
Gelb, Bruce D.
Portman, Michael
Ashley, Euan A.
author_sort Priest, James R.
collection PubMed
description Congenital heart disease (CHD) has a complex genetic etiology, and recent studies suggest that high penetrance de novo mutations may account for only a small fraction of disease. In a multi-institutional cohort surveyed by exome sequencing, combining analysis of 987 individuals (discovery cohort of 59 affected trios and 59 control trios, and a replication cohort of 100 affected singletons and 533 unaffected singletons) we observe variation at novel and known loci related to a specific cardiac malformation the atrioventricular septal defect (AVSD). In a primary analysis, by combining developmental coexpression networks with inheritance modeling, we identify a de novo mutation in the DNA binding domain of NR1D2 (p.R175W). We show that p.R175W changes the transcriptional activity of Nr1d2 using an in vitro transactivation model in HUVEC cells. Finally, we demonstrate previously unrecognized cardiovascular malformations in the Nr1d2(tm1-Dgen) knockout mouse. In secondary analyses we map genetic variation to protein-interaction networks suggesting a role for two collagen genes in AVSD, which we corroborate by burden testing in a second replication cohort of 100 AVSDs and 533 controls (p = 8.37e-08). Finally, we apply a rare-disease inheritance model to identify variation in genes previously associated with CHD (ZFPM2, NSD1, NOTCH1, VCAN, and MYH6), cardiac malformations in mouse models (ADAM17, CHRD, IFT140, PTPRJ, RYR1 and ATE1), and hypomorphic alleles of genes causing syndromic CHD (EHMT1, SRCAP, BBS2, NOTCH2, and KMT2D) in 14 of 59 trios, greatly exceeding variation in control trios without CHD (p = 9.60e-06). In total, 32% of trios carried at least one putatively disease-associated variant across 19 loci,suggesting that inherited and de novo variation across a heterogeneous group of loci may contribute to disease risk.
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spelling pubmed-48259752016-04-22 De Novo and Rare Variants at Multiple Loci Support the Oligogenic Origins of Atrioventricular Septal Heart Defects Priest, James R. Osoegawa, Kazutoyo Mohammed, Nebil Nanda, Vivek Kundu, Ramendra Schultz, Kathleen Lammer, Edward J. Girirajan, Santhosh Scheetz, Todd Waggott, Daryl Haddad, Francois Reddy, Sushma Bernstein, Daniel Burns, Trudy Steimle, Jeffrey D. Yang, Xinan H. Moskowitz, Ivan P. Hurles, Matthew Lifton, Richard P. Nickerson, Debbie Bamshad, Michael Eichler, Evan E. Mital, Seema Sheffield, Val Quertermous, Thomas Gelb, Bruce D. Portman, Michael Ashley, Euan A. PLoS Genet Research Article Congenital heart disease (CHD) has a complex genetic etiology, and recent studies suggest that high penetrance de novo mutations may account for only a small fraction of disease. In a multi-institutional cohort surveyed by exome sequencing, combining analysis of 987 individuals (discovery cohort of 59 affected trios and 59 control trios, and a replication cohort of 100 affected singletons and 533 unaffected singletons) we observe variation at novel and known loci related to a specific cardiac malformation the atrioventricular septal defect (AVSD). In a primary analysis, by combining developmental coexpression networks with inheritance modeling, we identify a de novo mutation in the DNA binding domain of NR1D2 (p.R175W). We show that p.R175W changes the transcriptional activity of Nr1d2 using an in vitro transactivation model in HUVEC cells. Finally, we demonstrate previously unrecognized cardiovascular malformations in the Nr1d2(tm1-Dgen) knockout mouse. In secondary analyses we map genetic variation to protein-interaction networks suggesting a role for two collagen genes in AVSD, which we corroborate by burden testing in a second replication cohort of 100 AVSDs and 533 controls (p = 8.37e-08). Finally, we apply a rare-disease inheritance model to identify variation in genes previously associated with CHD (ZFPM2, NSD1, NOTCH1, VCAN, and MYH6), cardiac malformations in mouse models (ADAM17, CHRD, IFT140, PTPRJ, RYR1 and ATE1), and hypomorphic alleles of genes causing syndromic CHD (EHMT1, SRCAP, BBS2, NOTCH2, and KMT2D) in 14 of 59 trios, greatly exceeding variation in control trios without CHD (p = 9.60e-06). In total, 32% of trios carried at least one putatively disease-associated variant across 19 loci,suggesting that inherited and de novo variation across a heterogeneous group of loci may contribute to disease risk. Public Library of Science 2016-04-08 /pmc/articles/PMC4825975/ /pubmed/27058611 http://dx.doi.org/10.1371/journal.pgen.1005963 Text en © 2016 Priest et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Priest, James R.
Osoegawa, Kazutoyo
Mohammed, Nebil
Nanda, Vivek
Kundu, Ramendra
Schultz, Kathleen
Lammer, Edward J.
Girirajan, Santhosh
Scheetz, Todd
Waggott, Daryl
Haddad, Francois
Reddy, Sushma
Bernstein, Daniel
Burns, Trudy
Steimle, Jeffrey D.
Yang, Xinan H.
Moskowitz, Ivan P.
Hurles, Matthew
Lifton, Richard P.
Nickerson, Debbie
Bamshad, Michael
Eichler, Evan E.
Mital, Seema
Sheffield, Val
Quertermous, Thomas
Gelb, Bruce D.
Portman, Michael
Ashley, Euan A.
De Novo and Rare Variants at Multiple Loci Support the Oligogenic Origins of Atrioventricular Septal Heart Defects
title De Novo and Rare Variants at Multiple Loci Support the Oligogenic Origins of Atrioventricular Septal Heart Defects
title_full De Novo and Rare Variants at Multiple Loci Support the Oligogenic Origins of Atrioventricular Septal Heart Defects
title_fullStr De Novo and Rare Variants at Multiple Loci Support the Oligogenic Origins of Atrioventricular Septal Heart Defects
title_full_unstemmed De Novo and Rare Variants at Multiple Loci Support the Oligogenic Origins of Atrioventricular Septal Heart Defects
title_short De Novo and Rare Variants at Multiple Loci Support the Oligogenic Origins of Atrioventricular Septal Heart Defects
title_sort de novo and rare variants at multiple loci support the oligogenic origins of atrioventricular septal heart defects
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4825975/
https://www.ncbi.nlm.nih.gov/pubmed/27058611
http://dx.doi.org/10.1371/journal.pgen.1005963
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