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Testing gene-environment interactions for rare and/or common variants in sequencing association studies

机译:测定测序协会研究中罕见和/或常见变体的基因环境相互作用

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摘要

The risk of many complex diseases is determined by a complex interplay of genetic and environmental factors. Advanced next generation sequencing technology makes identification of gene-environment (GE) interactions for both common and rare variants possible. However, most existing methods focus on testing the main effects of common and/or rare genetic variants. There are limited methods developed to test the effects of GE interactions for rare variants only or rare and common variants simultaneously. In this study, we develop novel approaches to test the effects of GE interactions of rare and/or common risk, and/or protective variants in sequencing association studies. We propose two approaches: 1) testing the effects of an optimally weighted combination of GE interactions for rare variants (TOW-GE); 2) testing the effects of a weighted combination of GE interactions for both rare and common variants (variable weight TOW-GE, VW-TOW-GE). Extensive simulation studies based on the Genetic Analysis Workshop 17 data show that the type I error rates of the proposed methods are well controlled. Compared to the existing interaction sequence kernel association test (ISKAT), TOW-GE is more powerful when there are GE interactions’ effects for rare risk and/or protective variants; VW-TOW-GE is more powerful when there are GE interactions’ effects for both rare and common risk and protective variants. Both TOW-GE and VW-TOW-GE are robust to the directions of effects of causal GE interactions. We demonstrate the applications of TOW-GE and VW-TOW-GE using an imputed data from the COPDGene Study.
机译:许多复杂疾病的风险由遗传和环境因素的复杂相互作用决定。高级下一代测序技术使得鉴定常见和罕见变体的基因环境(GE)相互作用。然而,大多数现有方法都专注于测试常见和/或稀有遗传变异的主要效果。有限的方法开发用于同时测试罕见变体的Ge相互作用的影响或罕见的常见变体。在这项研究中,我们开发了新的方法来测试罕见和/或常见风险的葛相互作用和/或保护变体在测序结合研究中的影响。我们提出了两种方法:1)测试GE相互作用的最佳加权组合对罕见变体(TOW-GE)的影响; 2)测试GE相互作用的加权组合对罕见和常用变体的影响(可变重量Tow-Ge,VW-Tow-Ge)。基于遗传分析研讨会的广泛仿真研究17数据显示,所提出的方法的I型误差率良好控制。与现有的相互作用序列核关联测试(ISKAT)相比,当GE相互作用对稀有风险和/或保护性变种的影响时,Tow-GE更强大;当有稀有和常见风险和保护型的eC互动的效果时,VW-Tow-GE更强大。 TOW-GE和VW-TOW-GE都强大到因果GE相互作用的影响方向。我们使用来自CopDgene研究的算刷数据展示TED-GE和VW-TOG-GE的应用。

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