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Clustering-local-unique-enriched-signals (CLUES) promotes identification of novel regulators of ES cell self-renewal and pluripotency

机译:聚集局部独特的富集信号(CLUES)促进了ES细胞自我更新和多能性的新型调节剂的鉴定

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摘要

BackgroundKey regulators of developmental processes can be prioritized through integrated analysis of ChIP-Seq data of master transcriptional factors (TFs) such as Nanog and Oct4, active histone modifications (HMs) such as H3K4me3 and H3K27ac, and repressive HMs such as H3K27me3. Recent studies show that broad enrichment signals such as super-enhancers and broad H3K4me3 enrichment signals play more dominant roles than short enrichment signals of the master TFs and H3K4me3 in epigenetic regulatory mechanism. Besides the broad enrichment signals, up to ten thousands of short enrichment signals of these TFs and HMs exist in genome. Prioritization of these broad enrichment signals from ChIP-Seq data is a prerequisite for such integrated analysis.
机译:背景可以通过对主要转录因子(TF)(例如Nanog和Oct4),活性组蛋白修饰(HM)(例如H3K4me3和H3K27ac)和抑制性HM(例如H3K27me3)的ChIP-Seq数据进行综合分析来确定发育过程的关键调控因子的优先级。最近的研究表明,在表观遗传调控机制中,诸如超级增强子等广泛的富集信号和广泛的H3K4me3富集信号比主要TF和H3K4me3的短富集信号起着更大的主导作用。除了广泛的富集信号外,基因组中还存在多达数千个这些TF和HM的短富集信号。根据ChIP-Seq数据对这些广泛的富集信号进行优先级排序是进行此类综合分析的前提。

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