Genetically Mediated Differences in LDL Cholesterol and Risk of Venous Thromboembolism.

Sui, Yang; Kany, Shinwan; Khurshid, Shaan; Supriami, Kelvin; Rämö, Joel T; Jurgens, Sean J; Enzan, Nobuyuki; Choi, Seung Hoan et al. · J Am Coll Cardiol · 2026

prospective_cohort · Level II

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Abstract

Venous thromboembolism (VTE) is a common and clinically significant cardiovascular condition. Although low-density lipoprotein (LDL) cholesterol is causally linked to atherosclerotic disease, its role in VTE remains unclear. Meta-analyses of randomized trials have suggested modest reductions in VTE with lipid-lowering therapy, but whether these effects are LDL mediated is uncertain. This study sought to evaluate whether lifelong genetically mediated differences in low-density lipoprotein cholesterol (LDL-C) are associated with VTE risk. Whole-genome sequencing data from 430,049 UK Biobank and 283,609 All of Us participants were analyzed. Rare protein-truncating and AlphaMissense-predicted damaging missense variants (minor allele frequency <0.1%) in LDLR, APOB, and PCSK9, as well as the common PCSK9 R46L variant, were evaluated. Associations with LDL-C were assessed using linear regression, and VTE associations using Firth logistic regression with fixed-effect meta-analysis. Incident VTE was evaluated using Cox models. Rare functional variants in LDLR, APOB, and PCSK9 produced substantial gene-specific differences in LDL-C (up to ∼50% differences). Despite these marked lifelong differences, rare variant burdens were not consistently associated with VTE across cohorts, although smaller effect sizes could not be excluded. Meta-analyzed ORs ranged from 0.60 to 1.07. Sensitivity and prospective analyses yielded similar findings. Complementary common variant and multivariable Mendelian randomization analyses suggested that previously reported LDL-C associations with VTE may partly reflect broader metabolic and obesity-related pathways. Positive control analyses of established thrombophilia variants demonstrated expected associations. Across 2 large biobanks, genetically mediated differences in LDL-C were not consistently associated with VTE risk, suggesting that genetically mediated differences in LDL-C are unlikely to exert a large effect on venous thrombosis risk, although small effects cannot be excluded. Complementary common variant analyses further suggest that previously reported LDL-C associations with VTE may partly reflect broader metabolic and obesity-related pathways rather than LDL-C itself.