肥厚性心肌病
全基因组关联研究
外显率
先证者
生物
生命银行
人口
人口分层
多基因风险评分
基因检测
遗传学
内科学
医学
基因型
环境卫生
单核苷酸多态性
突变
表型
基因
生物化学
作者
Sean L. Zheng,Sean J. Jurgens,Kathryn A. McGurk,Xiao Yun Xu,Chris Grace,Pantazis Theotokis,Rachel Buchan,Catherine Francis,Antonio de Marvao,Lara Curran,Wenjia Bai,Chee Jian Pua,Hak Chiaw Tang,Paloma Jordà,Marjon A. van Slegtenhorst,Judith M.A. Verhagen,Andrew R. Harper,Elizabeth Ormondroyd,Calvin Chin,Antonio de Marvao
标识
DOI:10.1038/s41588-025-02094-5
摘要
Abstract Hypertrophic cardiomyopathy (HCM) is an important cause of morbidity and mortality, with pathogenic variants found in about a third of cases. Large-scale genome-wide association studies (GWAS) demonstrate that common genetic variation contributes to HCM risk. Here we derive polygenic scores (PGS) from HCM GWAS and genetically correlated traits and test their performance in the UK Biobank, 100,000 Genomes Project, and clinical cohorts. We show that higher PGS significantly increases the risk of HCM in the general population, particularly among pathogenic variant carriers, where HCM penetrance differs 10-fold between those in the highest and lowest PGS quintiles. Among relatives of HCM probands, PGS stratifies risks of developing HCM and adverse outcomes. Finally, among HCM cases, PGS strongly predicts the risk of adverse outcomes and death. These findings support the broad utility of PGS across clinical settings, enabling tailored screening and surveillance and stratification of risk of adverse outcomes.
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