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The pluripotent regulatory circuitry connecting promoters to their long-range interacting elements

机译:多能调节电路将启动子连接到它们的远程相互作用元件

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摘要

The mammalian genome harbors up to one million regulatory elements often located at great distances from their target genes. Long-range elements control genes through physical contact with promoters and can be recognized by the presence of specific histone modifications and transcription factor binding. Linking regulatory elements to specific promoters genome-wide is currently impeded by the limited resolution of high-throughput chromatin interaction assays. Here we apply a sequence capture approach to enrich Hi-C libraries for >22,000 annotated mouse promoters to identify statistically significant, long-range interactions at restriction fragment resolution, assigning long-range interacting elements to their target genes genome-wide in embryonic stem cells and fetal liver cells. The distal sites contacting active genes are enriched in active histone modifications and transcription factor occupancy, whereas inactive genes contact distal sites with repressive histone marks, demonstrating the regulatory potential of the distal elements identified. Furthermore, we find that coregulated genes cluster nonrandomly in spatial interaction networks correlated with their biological function and expression level. Interestingly, we find the strongest gene clustering in ES cells between transcription factor genes that control key developmental processes in embryogenesis. The results provide the first genome-wide catalog linking gene promoters to their long-range interacting elements and highlight the complex spatial regulatory circuitry controlling mammalian gene expression.
机译:哺乳动物基因组具有多达一百万个调节元件,通常位于距其靶基因很远的地方。远程元件通过与启动子的物理接触来控制基因,并且可以通过存在特定的组蛋白修饰和转录因子结合而被识别。目前,高通量染色质相互作用分析的有限分辨率阻碍了调控元件与全基因组特定启动子的连接。在这里,我们应用序列捕获方法来丰富Hi-C库,以备有超过22,000个带注释的小鼠启动子,以鉴定限制性片段分辨率下具有统计学意义的远距离相互作用,从而将远距离相互作用元件分配给它们在胚胎干细胞中全基因组的靶基因。和胎儿肝细胞。接触活性基因的远端位点富含活性组蛋白修饰和转录因子的占有,而无效基因接触具有抑制性组蛋白标记的远端位点,证明了所鉴定的远端元件的调控潜力。此外,我们发现核心调控基因在与它们的生物学功能和表达水平相关的空间相互作用网络中非随机聚集。有趣的是,我们发现控制胚胎发育关键发育过程的转录因子基因之间的ES细胞中最强的基因簇集。结果提供了第一个全基因组范围的目录,将基因启动子连接到它们的远程相互作用元件,并强调了控制哺乳动物基因表达的复杂空间调节电路。

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