染色质重塑因子和通过DNA复制维持转录状态。

Sofia Aligianni, Patrick Varga-Weisz
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引用次数: 5

摘要

在复制叉上,核小体、转录因子和RNA聚合酶被从DNA上剥离,DNA双链被解开,DNA甲基化标记可能被抹去。因此,DNA复制对表观基因组来说既是“祸”也是“福”,因为它通过引起染色质扰动破坏了表观基因组的稳定性,但它提供了启动染色质结构和基因表达模式变化的机会,尤其是在发育过程中。因此,DNA复制位点是调控的关键点。很明显,在调节转录能力和DNA复制程序的那些因素之间存在着密切的功能关系。在这篇综述中,我们讨论了在复制位点染色质重塑因子如何参与维持和调节转录状态的新见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chromatin-remodelling factors and the maintenance of transcriptional states through DNA replication.

At the replication fork, nucleosomes, transcription factors and RNA polymerases are stripped off the DNA, the DNA double strands are unzipped and DNA methylation marks may be erased. Therefore DNA replication is both a 'curse' and 'bliss' for the epigenome, as it disrupts its stability by causing chromatin perturbations, yet it offers an opportunity to initiate changes in chromatin architecture and gene expression patterns, especially during development. Thus the DNA replication site is a critical point for regulation. It has become apparent that there is a close functional relationship between those factors that regulate transcriptional competence and the DNA replication programme. In this review we discuss novel insights into how chromatin-remodelling factors at replication sites are involved in both the maintenance and regulation of transcriptional states.

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