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Prioritizing long range interactions in noncoding regions using GWAS and deletions perturbed TADs

机译:使用Gwas和删除的TADS优先考虑非分量区域的长距离相互作用

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摘要

Genome-wide association studies (GWAS) have contributed significantly to predisposing the disease etiology by associating single nucleotide polymorphisms (SNPs) with complex diseases. However, most GWAS-SNPs are in the noncoding regions that may affect distal genes via long range enhancer-promoter interactions. Thus, the common practice on GWAS discoveries cannot fully reveal the molecular mechanisms underpinning complex diseases. It is known that perturbations of topological associated domains (TADs) lead to long range interactions which underlie disease etiology. To identify the probable long range interactions in noncoding regions via GWAS and TADs perturbed by deletions, we integrated datasets from GWAS-SNPs, enhancers, TADs, and deletions. After ranking and clustering, we prioritized 201,132 high confident pairs of GWAS-SNPs and target genes. In this study, we performed a systematic inference on noncoding regions via GWAS-SNPs and deletion-perturbed TADs to boost GWAS discovery power. The high confident pairs of GWAS-SNPs and target genes (SE-Gs) provide the promising candidates to understand the molecular mechanisms underlying complex diseases with emphasis on the three-dimensional genome.
机译:基因组 - 范围的协会研究(GWAS)通过将单核苷酸多态性(SNP)与复杂的疾病相关联来促进疾病病因。然而,大多数Gwas-SNP在非分量区域中,可能通过长距离增强剂 - 启动子相互作用影响远端基因。因此,GWAS发现的常见做法不能完全揭示支然疾病的分子机制。众所周知,拓扑相关域(TADS)的扰动导致疾病病因的长范围相互作用。为了识别通过删除的GWAS和TAD的非划分区域的可能的长距离交互,我们集成了来自GWAS-SNP,增强剂,TAD和删除的数据集。排名和聚类后,我们优先考虑201,132高自信的GWAS-SNP和靶基因。在这项研究中,我们通过GWA-SNP和删除的TAD对非编码区进行了系统推断,以提高GWAS发现能力。高自信的Gwas-SNP和靶基因(SE-GS)提供了有希望的候选者,以了解复杂疾病的分子机制,重点是三维基因组。

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