Division of Public Health Sciences, Fred Hutchinson Cancer Research Center, Seattle, Washington.
Department of Biostatistics, School of Public Health, University of Washington, Seattle, Washington.
Am J Epidemiol. 2018 Dec 1;187(12):2672-2680. doi: 10.1093/aje/kwy177.
Diagnosing pleiotropy is critical for assessing the validity of Mendelian randomization (MR) analyses. The popular MR-Egger method evaluates whether there is evidence of bias-generating pleiotropy among a set of candidate genetic instrumental variables. In this article, we propose a statistical method-global and individual tests for direct effects (GLIDE)-for systematically evaluating pleiotropy among the set of genetic variants (e.g., single nucleotide polymorphisms (SNPs)) used for MR. As a global test, simulation experiments suggest that GLIDE is nearly uniformly more powerful than the MR-Egger method. As a sensitivity analysis, GLIDE is capable of detecting outliers in individual variant-level pleiotropy, in order to obtain a refined set of genetic instrumental variables. We used GLIDE to analyze both body mass index and height for associations with colorectal cancer risk in data from the Genetics and Epidemiology of Colorectal Cancer Consortium and the Colon Cancer Family Registry (multiple studies). Among the body mass index-associated SNPs and the height-associated SNPs, several individual variants showed evidence of pleiotropy. Removal of these potentially pleiotropic SNPs resulted in attenuation of respective estimates of the causal effects. In summary, the proposed GLIDE method is useful for sensitivity analyses and improves the validity of MR.
诊断多效性对于评估孟德尔随机化(MR)分析的有效性至关重要。流行的 MR-Egger 方法评估了一组候选遗传工具变量中是否存在产生偏差的多效性证据。在本文中,我们提出了一种统计方法——用于直接效应的全局和个体检验(GLIDE)——用于系统地评估用于 MR 的一组遗传变异(例如,单核苷酸多态性(SNP))之间的多效性。作为全局检验,模拟实验表明 GLIDE 几乎比 MR-Egger 方法更有效。作为敏感性分析,GLIDE 能够检测个体变异水平多效性中的异常值,以获得一组经过精炼的遗传工具变量。我们使用 GLIDE 分析了遗传与流行病学结肠癌联盟和结肠癌家族登记处(多项研究)的数据中与结直肠癌风险相关的体重指数和身高。在与体重指数相关的 SNP 和与身高相关的 SNP 中,有几个个体变体显示出多效性的证据。去除这些潜在的多效性 SNP 会导致因果效应的估计值减弱。总之,所提出的 GLIDE 方法可用于敏感性分析,并提高 MR 的有效性。