Complex effects of sequence variants on lipid levels and coronary artery disease

生物 冠状动脉疾病 上位性 情感(语言学) 遗传学 血脂 方差分析 基因 计算生物学 胆固醇 内科学 内分泌学 语言学 医学 哲学
作者
Auðunn Skúta Snæbjarnarson,Anna Helgadóttir,Gudny A. Arnadottir,Erna V. Ivarsdottir,Guðmar Þorleifsson,Egil Ferkingstad,Guðmundur Einarsson,Garðar Sveinbjörnsson,Thorgeir E. Thorgeirsson,Magnús Ö. Úlfarsson,Bjarni V. Halldórsson,Ísleifur Ólafsson,Christian Erikstrup,Ole Birger Pedersen,Mette Nyegaard,Mie Topholm Bruun,Henrik Ullum,Søren Brunak,Kasper Iversen,Alex Hørby Christensen,Morten S. Olesen,Jonas Ghouse,Karina Banasik,Kirk U. Knowlton,Davíð O. Arnar,Guðmundur Þorgeirsson,Lincoln Nadauld,Sisse Rye Ostrowski,Henning Bundgaard,Hilma Hólm,Patrick Sulem,Hreinn Stefánsson,Daníel F. Guðbjartsson
出处
期刊:Cell [Cell Press]
卷期号:186 (19): 4085-4099.e15 被引量:10
标识
DOI:10.1016/j.cell.2023.08.012
摘要

Many sequence variants have additive effects on blood lipid levels and, through that, on the risk of coronary artery disease (CAD). We show that variants also have non-additive effects and interact to affect lipid levels as well as affecting variance and correlations. Variance and correlation effects are often signatures of epistasis or gene-environmental interactions. These complex effects can translate into CAD risk. For example, Trp154Ter in FUT2 protects against CAD among subjects with the A1 blood group, whereas it associates with greater risk of CAD in others. His48Arg in ADH1B interacts with alcohol consumption to affect lipid levels and CAD. The effect of variants in TM6SF2 on blood lipids is greatest among those who never eat oily fish but absent from those who often do. This work demonstrates that variants that affect variance of quantitative traits can allow for the discovery of epistasis and interactions of variants with the environment.
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