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染色质三维相互作用介导基因表达的遗传效应。

Chromatin three-dimensional interactions mediate genetic effects on gene expression.

机构信息

Department of Genetic Medicine and Development, University of Geneva, Geneva, Switzerland.

Swiss Institute of Bioinformatics (SIB), University of Geneva, Geneva, Switzerland.

出版信息

Science. 2019 May 3;364(6439). doi: 10.1126/science.aat8266.

Abstract

Studying the genetic basis of gene expression and chromatin organization is key to characterizing the effect of genetic variability on the function and structure of the human genome. Here we unravel how genetic variation perturbs gene regulation using a dataset combining activity of regulatory elements, gene expression, and genetic variants across 317 individuals and two cell types. We show that variability in regulatory activity is structured at the intra- and interchromosomal levels within 12,583 cis-regulatory domains and 30 trans-regulatory hubs that highly reflect the local (that is, topologically associating domains) and global (that is, open and closed chromatin compartments) nuclear chromatin organization. These structures delimit cell type-specific regulatory networks that control gene expression and coexpression and mediate the genetic effects of cis- and trans-acting regulatory variants on genes.

摘要

研究基因表达和染色质组织的遗传基础是描述遗传变异对人类基因组功能和结构影响的关键。在这里,我们利用包含 317 个人和两种细胞类型的调控元件活性、基因表达和遗传变异的数据集,揭示了遗传变异如何干扰基因调控。我们表明,在 12583 个顺式调控域和 30 个转录调控枢纽内,调控活性的变异性在染色体内和染色体间水平上是有结构的,这些枢纽高度反映了局部(即拓扑关联域)和全局(即开放和封闭染色质区室)核染色质组织。这些结构划定了细胞类型特异性的调控网络,这些网络控制着基因表达和共表达,并介导顺式和反式作用调控变体对基因的遗传影响。

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