Integrative modeling of transmitted and de novo variants identifies novel risk genes for congenital heart disease

被引:0
|
作者
Mo Li [1 ]
Xue Zeng [2 ]
Chentian Jin [3 ]
Sheng Chih Jin [4 ]
Weilai Dong [2 ]
Martina Brueckner [2 ,5 ]
Richard Lifton [2 ,6 ]
Qiongshi Lu [7 ]
Hongyu Zhao [1 ,2 ,8 ]
机构
[1] Department of Biostatistics, Yale School of Public Health
[2] Department of Genetics, Yale University
[3] Department of Molecular, Cellular & Developmental Biology, Yale University
[4] Department of Genetics, Washington University School of Medicine
[5] Department of Pediatrics, Yale University
[6] Laboratory of Human Genetics and Genomics, Rockefeller University
[7] Department of Biostatistics and Medical Informatics, University of Wisconsin-Madison
[8] Program of Computational Biology and Bioinformatics, Yale
关键词
D O I
暂无
中图分类号
R541.1 [先天性心脏血管病];
学科分类号
摘要
Background: Whole-exome sequencing(WES) studies have identified multiple genes enriched for de novo mutations(DNMs) in congenital heart disease(CHD) probands. However, risk gene identification based on DNMs alone remains statistically challenging due to heterogenous etiology of CHD and low mutation rate in each gene.Methods: In this manuscript, we introduce a hierarchical Bayesian framework for gene-level association test which jointly analyzes de novo and rare transmitted variants. Through integrative modeling of multiple types of genetic variants, gene-level annotations, and reference data from large population cohorts, our method accurately characterizes the expected frequencies of both de novo and transmitted variants and shows improved statistical power compared to analyses based on DNMs only.Results: Applied to WES data of 2,645 CHD proband-parent trios, our method identified 15 significant genes, half of which are novel, leading to new insights into the genetic bases of CHD.Conclusion: These results showcase the power of integrative analysis of transmitted and de novo variants for disease gene discovery.
引用
收藏
页码:216 / 227
页数:12
相关论文
共 50 条
  • [1] Integrative modeling of transmitted and de novo variants identifies novel risk genes for congenital heart disease
    Li, Mo
    Zeng, Xue
    Wet, Chentian
    Jin, Sheng Chih
    Dong, Weilai
    Brueckner, Martina
    Lifton, Richard
    Lu, Qiongshi
    Zhao, Hongyu
    QUANTITATIVE BIOLOGY, 2021, 9 (02) : 216 - 227
  • [2] De novo variants in exomes of congenital heart disease patients identify risk genes and pathways
    Bayrak, Cigdem Sevim
    Zhang, Peng
    Tristani-Firouzi, Martin
    Gelb, Bruce D.
    Itan, Yuval
    GENOME MEDICINE, 2020, 12 (01)
  • [3] De novo variants in exomes of congenital heart disease patients identify risk genes and pathways
    Cigdem Sevim Bayrak
    Peng Zhang
    Martin Tristani-Firouzi
    Bruce D. Gelb
    Yuval Itan
    Genome Medicine, 12
  • [4] Net fishing for de novo variants in congenital heart disease
    Elvira Forte
    Nature Cardiovascular Research, 2022, 1 : 195 - 195
  • [5] Noncoding de novo variants contribute to congenital heart disease
    Dengler, V. L.
    GENETICS IN MEDICINE, 2020, 22 (09) : 1430 - 1430
  • [6] Net fishing for de novo variants in congenital heart disease
    Forte, Elvira
    NATURE CARDIOVASCULAR RESEARCH, 2022, 1 (03): : 195 - 195
  • [7] Genomic analyses implicate noncoding de novo variants in congenital heart disease
    Felix Richter
    Sarah U. Morton
    Seong Won Kim
    Alexander Kitaygorodsky
    Lauren K. Wasson
    Kathleen M. Chen
    Jian Zhou
    Hongjian Qi
    Nihir Patel
    Steven R. DePalma
    Michael Parfenov
    Jason Homsy
    Joshua M. Gorham
    Kathryn B. Manheimer
    Matthew Velinder
    Andrew Farrell
    Gabor Marth
    Eric E. Schadt
    Jonathan R. Kaltman
    Jane W. Newburger
    Alessandro Giardini
    Elizabeth Goldmuntz
    Martina Brueckner
    Richard Kim
    George A. Porter
    Daniel Bernstein
    Wendy K. Chung
    Deepak Srivastava
    Martin Tristani-Firouzi
    Olga G. Troyanskaya
    Diane E. Dickel
    Yufeng Shen
    Jonathan G. Seidman
    Christine E. Seidman
    Bruce D. Gelb
    Nature Genetics, 2020, 52 : 769 - 777
  • [8] Genomic analyses implicate noncoding de novo variants in congenital heart disease
    Richter, Felix
    Morton, Sarah U.
    Kim, Seong Won
    Kitaygorodsky, Alexander
    Wasson, Lauren K.
    Chen, Kathleen M.
    Zhou, Jian
    Qi, Hongjian J.
    Patel, Nihir
    DePalma, Steven R.
    Parfenov, Michael
    Homsy, Jason
    Gorham, Joshua M.
    Manheimer, Kathryn B.
    Velinder, Matthew
    Farrell, Andrew
    Marth, Gabor
    Schadt, Eric E.
    Kaltman, Jonathan R.
    Newburger, Jane W.
    Giardini, Alessandro
    Goldmuntz, Elizabeth
    Brueckner, Martina
    Kim, Richard
    Porter, George A., Jr.
    Bernstein, Daniel
    Chung, Wendy K.
    Srivastava, Deepak
    Tristani-Firouzi, Martin
    Troyanskaya, Olga G.
    Dickel, Diane E.
    Shen, Yufeng
    Seidman, Jonathan G.
    Seidman, Christine E.
    Gelb, Bruce D.
    NATURE GENETICS, 2020, 52 (08) : 769 - +
  • [9] IMPACT OF DAMAGING DE NOVO VARIANTS ON CLINICAL OUTCOMES IN CONGENITAL HEART DISEASE
    Lewis, Matthew J.
    Qi, Hongjian
    Hsieh, Alexander
    Rosenbaum, Marlon
    Shen, Yufeng
    Chung, Wendy
    JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2017, 69 (11) : 2553 - 2553
  • [10] De novo mutations in histone-modifying genes in congenital heart disease
    Samir Zaidi
    Murim Choi
    Hiroko Wakimoto
    Lijiang Ma
    Jianming Jiang
    John D. Overton
    Angela Romano-Adesman
    Robert D. Bjornson
    Roger E. Breitbart
    Kerry K. Brown
    Nicholas J. Carriero
    Yee Him Cheung
    John Deanfield
    Steve DePalma
    Khalid A. Fakhro
    Joseph Glessner
    Hakon Hakonarson
    Michael J. Italia
    Jonathan R. Kaltman
    Juan Kaski
    Richard Kim
    Jennie K. Kline
    Teresa Lee
    Jeremy Leipzig
    Alexander Lopez
    Shrikant M. Mane
    Laura E. Mitchell
    Jane W. Newburger
    Michael Parfenov
    Itsik Pe’er
    George Porter
    Amy E. Roberts
    Ravi Sachidanandam
    Stephan J. Sanders
    Howard S. Seiden
    Mathew W. State
    Sailakshmi Subramanian
    Irina R. Tikhonova
    Wei Wang
    Dorothy Warburton
    Peter S. White
    Ismee A. Williams
    Hongyu Zhao
    Jonathan G. Seidman
    Martina Brueckner
    Wendy K. Chung
    Bruce D. Gelb
    Elizabeth Goldmuntz
    Christine E. Seidman
    Richard P. Lifton
    Nature, 2013, 498 : 220 - 223