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Transcriptional competence in pluripotency

机译:多能转录能力

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摘要

Embryonic stem (ES) cells possess a globally open, decondensed chromatin structure that, together with transacting factors, supports transcriptional competence of developmentally regulated genes. However, our understanding of the mechanisms that establish transcriptional competence of specific genes is limited. In this issue of Genes & Development, Xu and colleagues (pp. 2824-2838) show that tissue-specific enhancers are actively marked by an unmethylated window in ES cells and induced pluripotent stem (iPS) cells. They propose a model and present supporting evidence to demonstrate the active involvement of pioneer transcription factors in this process. This work marks an important step toward the understanding of the mechanisms that define and maintain pluripotency, and calls for the identification of the factors that participate in the establishment of transcriptional competence in pluripotent cells.
机译:胚胎干(ES)细胞具有全局开放的,浓缩的染色质结构,该结构与交易因子一起支持发育调控基因的转录能力。但是,我们对建立特定基因转录能力的机制的理解是有限的。在本期《基因与发育》中,Xu及其同事(第2824-2838页)表明,组织特异性增强子在ES细胞和诱导性多能干(iPS)细胞中以未甲基化的窗口为特征。他们提出了一个模型并提出了支持证据,以证明先驱转录因子在这一过程中的积极参与。这项工作标志着迈向理解定义和维持多能性的机制的重要一步,并呼吁鉴定参与多能细胞转录能力建立的因素。

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