Integrative analysis of the plasma proteome and polygenic risk of cardiometabolic diseases

疾病 数量性状位点 遗传建筑学 2型糖尿病 等位基因 生物 蛋白质组 糖尿病 生物信息学 遗传学 全基因组关联研究 医学 基因 内科学 内分泌学 单核苷酸多态性 基因型
作者
Scott C. Ritchie,Samuel A. Lambert,Matthew Arnold,Shu Mei Teo,Sol Lim,Petar Šćepanović,Jonathan Marten,Sohail Zahid,Mark Chaffin,Yingying Liu,Gad Abraham,Willem H. Ouwehand,David J. Roberts,Nicholas A. Watkins,Brian G. Drew,Anna C. Calkin,Emanuele Di Angelantonio,Nicole Soranzo,Stephen Burgess,Michael Chapman,Sekar Kathiresan,Amit V. Khera,John Danesh,Adam S. Butterworth,Michael Inouye
出处
期刊:Nature metabolism [Springer Nature]
卷期号:3 (11): 1476-1483 被引量:65
标识
DOI:10.1038/s42255-021-00478-5
摘要

Cardiometabolic diseases are frequently polygenic in architecture, comprising a large number of risk alleles with small effects spread across the genome1–3. Polygenic scores (PGS) aggregate these into a metric representing an individual’s genetic predisposition to disease. PGS have shown promise for early risk prediction4–7 and there is an open question as to whether PGS can also be used to understand disease biology8. Here, we demonstrate that cardiometabolic disease PGS can be used to elucidate the proteins underlying disease pathogenesis. In 3,087 healthy individuals, we found that PGS for coronary artery disease, type 2 diabetes, chronic kidney disease and ischaemic stroke are associated with the levels of 49 plasma proteins. Associations were polygenic in architecture, largely independent of cis and trans protein quantitative trait loci and present for proteins without quantitative trait loci. Over a follow-up of 7.7 years, 28 of these proteins associated with future myocardial infarction or type 2 diabetes events, 16 of which were mediators between polygenic risk and incident disease. Twelve of these were druggable targets with therapeutic potential. Our results demonstrate the potential for PGS to uncover causal disease biology and targets with therapeutic potential, including those that may be missed by approaches utilizing information at a single locus. Ritchie et al. use polygenic scores to identify plasma proteins with causal roles in cardiometabolic disease.

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