射血分数
心室
生命银行
心脏病
全基因组关联研究
心脏病学
内科学
心肌病
生物
致心律失常性右心室发育不良
扩张型心肌病
遗传学
心力衰竭
医学
单核苷酸多态性
基因
基因型
作者
James P. Pirruccello,Paolo Di Achille,Victor Nauffal,Mahan Nekoui,Sam Friedman,Marcus D. R. Klarqvist,Mark Chaffin,Lu‐Chen Weng,Jonathan W. Cunningham,Shaan Khurshid,Carolina Roselli,Honghuang Lin,Satoshi Koyama,Kaoru Ito,Yoichiro Kamatani,Issei Komuro,The BioBank Japan Project,Koichi Matsuda,Yuji Yamanashi,Yoichi Furukawa
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2022-06-01
卷期号:54 (6): 792-803
被引量:94
标识
DOI:10.1038/s41588-022-01090-3
摘要
Congenital heart diseases often involve maldevelopment of the evolutionarily recent right heart chamber. To gain insight into right heart structure and function, we fine-tuned deep learning models to recognize the right atrium, right ventricle and pulmonary artery, measuring right heart structures in 40,000 individuals from the UK Biobank with magnetic resonance imaging. Genome-wide association studies identified 130 distinct loci associated with at least one right heart measurement, of which 72 were not associated with left heart structures. Loci were found near genes previously linked with congenital heart disease, including NKX2-5, TBX5/TBX3, WNT9B and GATA4. A genome-wide polygenic predictor of right ventricular ejection fraction was associated with incident dilated cardiomyopathy (hazard ratio, 1.33 per standard deviation; P = 7.1 × 10-13) and remained significant after accounting for a left ventricular polygenic score. Harnessing deep learning to perform large-scale cardiac phenotyping, our results yield insights into the genetic determinants of right heart structure and function.
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