Whole genome sequencing analysis of the cardiometabolic proteome
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This study used whole-genome sequencing in 1,328 individuals to identify 131 genetic associations with cardiometabolic proteins, finding rare variant cis-acting effects and developing polygenic scores explaining up to 45% of protein variation.
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Abstract
The human proteome is a crucial intermediate between complex diseases and their genetic and environmental components, and an important source of drug development targets and biomarkers. Here, we comprehensively assess the genetic architecture of 257 circulating protein biomarkers of cardiometabolic relevance through high-depth (22.5x) whole-genome sequencing (WGS) in 1,328 individuals. We discover 131 independent sequence variant associations ( P <7.45×10 −11 ) across the allele frequency spectrum, all of which replicate in an independent cohort (n=1,605, 18.4x WGS). We identify for the first time replicating evidence for rare-variant cis -acting protein quantitative trait loci for five genes, involving both coding and non-coding variation. We construct and validate polygenic scores that explain up to 45% of protein level variation. We find causal links between protein levels and disease risk, identifying high-value biomarkers and drug development targets.
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- europepmc
- last seen: 2026-05-19T01:45:01.086888+00:00