Proteome-wide genetic analyses identify ASGR1 as a potential biomarker linking smoking with ischemic heart disease

Abstract Tobacco smoking increases the risk of multiple diseases, but the biological mechanisms involved remain incompletely understood. Here we characterize smoking-related protein profiles to identify potentially causal biomarkers mediating smoking’s effects. In European-ancestry populations, genetically predicted smoking exposures were significantly associated with levels of 93 (total: 2,922) proteins, including higher levels of asialoglycoprotein receptor 1 (ASGR1). The positive association of ASGR1 levels with ischemic heart disease (IHD) was supported by colocalization (posterior probability of hypothesis 4 = 0.91), and was estimated to explain 6.35% (95% confidence interval 2.61–10.09%, P = 8.77 × 10 −4 ) of smoking’s effects on IHD in two-step Mendelian randomization analyses. In network analyses, genetically predicted ASGR1 levels were inversely associated with plasma levels of more than 100 proteins, including growth arrest-specific 6, with all these proteins having rs55714927 (that is, a cis -protein quantitative trait locus for ASGR1) as a trans -protein quantitative trait locus. Sensitivity analyses in never-smokers identified a nonstatistically significant residual association between ASGR1 and IHD, which is consistent with possible horizontal pleiotropy, with body mass index implicated as a potential contributing pathway.

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Publication Details

Journal
Nature Cardiovascular Research
Published
2026-09-22
DOI
https://doi.org/10.1038/s44161-026-00871-x
Primary Topic
Genetic Associations and Epidemiology
Type
article
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article

Proteome-wide genetic analyses identify ASGR1 as a potential biomarker linking smoking with ischemic heart disease

Andri Iona, Adam Von Ende, Fiona Bragg, Robert Clarke et al.
Nature Cardiovascular Research
Genetic Associations and Epidemiology
article

Proteome-wide genetic analyses identify ASGR1 as a potential biomarker linking smoking with ischemic heart disease

Andri Iona, Adam Von Ende, Fiona Bragg, Robert Clarke, Pang Yao, Iona Y. Millwood, Robin G. Walters, Zhengming Chen, Alfred Pozarickij, Alexander C. Tinworth
article en

Abstract

Abstract Tobacco smoking increases the risk of multiple diseases, but the biological mechanisms involved remain incompletely understood. Here we characterize smoking-related protein profiles to identify potentially causal biomarkers mediating smoking’s effects. In European-ancestry populations, genetically predicted smoking exposures were significantly associated with levels of 93 (total: 2,922) proteins, including higher levels of asialoglycoprotein receptor 1 (ASGR1). The positive association of ASGR1 levels with ischemic heart disease (IHD) was supported by colocalization (posterior probability of hypothesis 4 = 0.91), and was estimated to explain 6.35% (95% confidence interval 2.61–10.09%, P = 8.77 × 10 −4 ) of smoking’s effects on IHD in two-step Mendelian randomization analyses. In network analyses, genetically predicted ASGR1 levels were inversely associated with plasma levels of more than 100 proteins, including growth arrest-specific 6, with all these proteins having rs55714927 (that is, a cis -protein quantitative trait locus for ASGR1) as a trans -protein quantitative trait locus. Sensitivity analyses in never-smokers identified a nonstatistically significant residual association between ASGR1 and IHD, which is consistent with possible horizontal pleiotropy, with body mass index implicated as a potential contributing pathway.

Nature Cardiovascular Research
Good health and well-being
Openalex Percentile: Top 11%
Genetic Associations and Epidemiology
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Proteome-wide genetic analyses identify ASGR1 as a potential biomarker linking smoking with ischemic heart disease — Andri Iona, Adam Von Ende, et al. · Nature Cardiovascular Research (2026) | TGRS Research Map | TGRS