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利用异质遗传工具进行可遗传表型风险因素的因果推断。

Causal inference for heritable phenotypic risk factors using heterogeneous genetic instruments.

机构信息

Department of Statistics, University of Chicago, Chicago, Illinois, United States of America.

Department of Pure Mathematics and Mathematical Statistics, University of Cambridge, Cambridge, United Kingdom.

出版信息

PLoS Genet. 2021 Jun 22;17(6):e1009575. doi: 10.1371/journal.pgen.1009575. eCollection 2021 Jun.

Abstract

Over a decade of genome-wide association studies (GWAS) have led to the finding of extreme polygenicity of complex traits. The phenomenon that "all genes affect every complex trait" complicates Mendelian Randomization (MR) studies, where natural genetic variations are used as instruments to infer the causal effect of heritable risk factors. We reexamine the assumptions of existing MR methods and show how they need to be clarified to allow for pervasive horizontal pleiotropy and heterogeneous effect sizes. We propose a comprehensive framework GRAPPLE to analyze the causal effect of target risk factors with heterogeneous genetic instruments and identify possible pleiotropic patterns from data. By using GWAS summary statistics, GRAPPLE can efficiently use both strong and weak genetic instruments, detect the existence of multiple pleiotropic pathways, determine the causal direction and perform multivariable MR to adjust for confounding risk factors. With GRAPPLE, we analyze the effect of blood lipids, body mass index, and systolic blood pressure on 25 disease outcomes, gaining new information on their causal relationships and potential pleiotropic pathways involved.

摘要

十余年的全基因组关联研究(GWAS)发现,复杂性状具有极强的多基因性。“所有基因都影响每一个复杂性状”的现象使孟德尔随机化(MR)研究变得复杂,因为自然遗传变异被用作推断可遗传风险因素因果效应的工具。我们重新审视了现有的 MR 方法的假设,并展示了如何澄清这些假设,以允许普遍的水平多效性和异质效应大小。我们提出了一个全面的框架 GRAPPLE,用于分析具有异质遗传工具的目标风险因素的因果效应,并从数据中识别可能的多效性模式。通过使用 GWAS 汇总统计数据,GRAPPLE 可以有效地利用强和弱的遗传工具,检测多个多效性途径的存在,确定因果方向,并进行多变量 MR 以调整混杂风险因素。利用 GRAPPLE,我们分析了血脂、体重指数和收缩压对 25 种疾病结果的影响,获得了关于它们因果关系和潜在多效性途径的新信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5059/8301661/05e2086f9115/pgen.1009575.g001.jpg

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