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利用表观基因组特征发现和验证亚阈值全基因组关联研究位点

Discovery and validation of sub-threshold genome-wide association study loci using epigenomic signatures.

作者信息

Wang Xinchen, Tucker Nathan R, Rizki Gizem, Mills Robert, Krijger Peter Hl, de Wit Elzo, Subramanian Vidya, Bartell Eric, Nguyen Xinh-Xinh, Ye Jiangchuan, Leyton-Mange Jordan, Dolmatova Elena V, van der Harst Pim, de Laat Wouter, Ellinor Patrick T, Newton-Cheh Christopher, Milan David J, Kellis Manolis, Boyer Laurie A

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge, United States.

Broad Institute of MIT and Harvard, Cambridge, United States.

出版信息

Elife. 2016 May 10;5:e10557. doi: 10.7554/eLife.10557.

Abstract

Genetic variants identified by genome-wide association studies explain only a modest proportion of heritability, suggesting that meaningful associations lie 'hidden' below current thresholds. Here, we integrate information from association studies with epigenomic maps to demonstrate that enhancers significantly overlap known loci associated with the cardiac QT interval and QRS duration. We apply functional criteria to identify loci associated with QT interval that do not meet genome-wide significance and are missed by existing studies. We demonstrate that these 'sub-threshold' signals represent novel loci, and that epigenomic maps are effective at discriminating true biological signals from noise. We experimentally validate the molecular, gene-regulatory, cellular and organismal phenotypes of these sub-threshold loci, demonstrating that most sub-threshold loci have regulatory consequences and that genetic perturbation of nearby genes causes cardiac phenotypes in mouse. Our work provides a general approach for improving the detection of novel loci associated with complex human traits.

摘要

全基因组关联研究识别出的基因变异仅解释了遗传性的一小部分,这表明有意义的关联“隐藏”在当前阈值之下。在这里,我们整合了关联研究和表观基因组图谱的信息,以证明增强子与已知的与心脏QT间期和QRS波时限相关的基因座有显著重叠。我们应用功能标准来识别与QT间期相关但未达到全基因组显著性且被现有研究遗漏的基因座。我们证明这些“亚阈值”信号代表了新的基因座,并且表观基因组图谱能够有效地从噪声中区分出真正的生物学信号。我们通过实验验证了这些亚阈值基因座的分子、基因调控、细胞和生物体表型,证明大多数亚阈值基因座具有调控作用,并且附近基因的遗传扰动会在小鼠中导致心脏表型。我们的工作提供了一种通用方法,用于改进与复杂人类性状相关的新基因座的检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a16d/4862755/e638bf3d44d0/elife-10557-fig1.jpg

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