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Direct and indirect genetic effects on triglycerides through omics and correlated phenotypes

机译:通过组学和相关表型对甘油三酸酯的直接和间接遗传影响

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摘要

Even though there has been great success in identifying lipid-associated single-nucleotide polymorphisms (SNPs), the mechanisms through which the SNPs act on each trait are poorly understood. The emergence of large, complex biological data sets in well-characterized cohort studies offers an opportunity to investigate the genetic effects on trait variability as a way of informing the causal genes and biochemical pathways that are involved in lipoprotein metabolism. However, methods for simultaneously analyzing multiple omics, environmental exposures, and longitudinally measured, correlated phenotypes are lacking. The purpose of our study was to demonstrate the utility of the structural equation modeling (SEM) approach to inform our understanding of the pathways by which genetic variants lead to disease risk. With the SEM method, we examine multiple pathways directly and indirectly through previously identified triglyceride (TG)-associated SNPs, methylation, and high-density lipoprotein (HDL), including sex, age, and smoking behavior, while adding in biologically plausible direct and indirect pathways. We observed significant SNP effects (P < 0.05 and directionally consistent) on TGs at visit 4 (TG4) for five loci, including rs645040 (DOCK7), rs964184 (ZPR1/ZNF259), rs4765127 (ZNF664), rs1121980 (FTO), and rs10401969 (SUGP1). Across these loci, we identify three with strong evidence of an indirect genetic effect on TG4 through HDL, one with evidence of pleiotropic effect on HDL and TG4, and one variant that acts on TG4 indirectly through a nearby methylation site. Such information can be used to prioritize candidate genes in regions of interest, inform mechanisms of action of methylation effects, and highlight possible genes with pleiotropic effects.
机译:尽管在鉴定脂质相关的单核苷酸多态性(SNP)方面已经取得了巨大的成功,但对SNP作用于每个性状的机制了解甚少。在特征明确的队列研究中,大型,复杂的生物学数据集的出现提供了一个机会,以研究遗传对性状变异的影响,以此作为告知与脂蛋白代谢有关的因果基因和生化途径的方式。但是,缺乏同时分析多种组学,环境暴露和纵向测量的相关表型的方法。我们研究的目的是证明结构方程模型(SEM)方法的实用性,以帮助我们理解遗传变异导致疾病风险的途径。使用SEM方法,我们通过先前确定的与甘油三酸酯(TG)相关的SNP,甲基化和高密度脂蛋白(HDL)(包括性别,年龄和吸烟行为)直接或间接地检查了多种途径,同时增加了生物学上可行的直接和间接证据。间接途径。我们在第4次访问(TG4)的5个位点对TGs观察到了显着的SNP效应(P

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