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Biobank-driven genomic discovery yields new insight into atrial fibrillation biology

Authors :
Nielsen, Jonas B.
Thorolfsdottir, Rosa B.
Fritsche, Lars G.
Zhou, Wei
Skov, Morten W.
Graham, Sarah E.
Herron, Todd J.
McCarthy, Shane
Schmidt, Ellen M.
Sveinbjornsson, Gardar
Surakka, Ida
Mathis, Michael R.
Yamazaki, Masatoshi
Crawford, Ryan D.
Gabrielsen, Maiken E.
Skogholt, Anne Heidi
Holmen, Oddgeir L.
Lin, Maoxuan
Wolford, Brooke N.
Dey, Rounak
Dalen, Håvard
Sulem, Patrick
Chung, Jonathan H.
Backman, Joshua D.
Arnar, David O.
Thorsteinsdottir, Unnur
Baras, Aris
O’Dushlaine, Colm
Holst, Anders G.
Wen, Xiaoquan
Hornsby, Whitney
Dewey, Frederick E.
Boehnke, Michael
Kheterpal, Sachin
Mukherjee, Bhramar
Lee, Seunggeun
Kang, Hyun M.
Holm, Hilma
Kitzman, Jacob
Shavit, Jordan A.
Jalife, José
Brummett, Chad M.
Teslovich, Tanya M.
Carey, David J.
Gudbjartsson, Daniel F.
Stefansson, Kari
Abecasis, Gonçalo R.
Hveem, Kristian
Willer, Cristen J.
Source :
Nature Genetics; September 2018, Vol. 50 Issue: 9 p1234-1239, 6p
Publication Year :
2018

Abstract

To identify genetic variation underlying atrial fibrillation, the most common cardiac arrhythmia, we performed a genome-wide association study of >1,000,000 people, including 60,620 atrial fibrillation cases and 970,216 controls. We identified 142 independent risk variants at 111 loci and prioritized 151 functional candidate genes likely to be involved in atrial fibrillation. Many of the identified risk variants fall near genes where more deleterious mutations have been reported to cause serious heart defects in humans (GATA4, MYH6, NKX2-5, PITX2, TBX5)1, or near genes important for striated muscle function and integrity (for example, CFL2, MYH7, PKP2, RBM20, SGCG, SSPN). Pathway and functional enrichment analyses also suggested that many of the putative atrial fibrillation genes act via cardiac structural remodeling, potentially in the form of an ‘atrial cardiomyopathy’2, either during fetal heart development or as a response to stress in the adult heart.

Details

Language :
English
ISSN :
10614036 and 15461718
Volume :
50
Issue :
9
Database :
Supplemental Index
Journal :
Nature Genetics
Publication Type :
Periodical
Accession number :
ejs50692090
Full Text :
https://doi.org/10.1038/s41588-018-0171-3