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Regulation of DNA Repair Mechanisms: How the Chromatin Environment Regulates the DNA Damage Response

机译:DNA修复机制的调节:染色质环境如何调节DNA损伤反应

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摘要

Cellular DNA is constantly challenged by damage-inducing factors derived from exogenous or endogenous sources. In order to maintain genome stability and integrity, cells have evolved a wide variety of DNA repair pathways which counteract different types of DNA lesions, also referred to as the DNA damage response (DDR). However, DNA in eukaryotes is highly organized and compacted into chromatin representing major constraints for all cellular pathways, including DNA repair pathways, which require DNA as their substrate. Therefore, the chromatin configuration surrounding the lesion site undergoes dramatic remodeling to facilitate access of DNA repair factors and subsequent removal of the DNA lesion. In this review, we focus on the question of how the cellular DNA repair pathways overcome the chromatin barrier, how the chromatin environment is rearranged to facilitate efficient DNA repair, which proteins mediate this re-organization process and, consequently, how the altered chromatin landscape is involved in the regulation of DNA damage responses.
机译:细胞DNA不断受到来自外源或内源性来源的损伤诱导因子的挑战。为了维持基因组的稳定性和完整性,细胞已经进化出各种各样的DNA修复途径,可以抵消不同类型的DNA损伤,也称为DNA损伤反应(DDR)。但是,真核生物中的DNA高度组织化并压制成染色质,代表了所有细胞途径(包括DNA修复途径)的主要限制条件,这些途径都需要以DNA为底物。因此,病变部位周围的染色质构型经历了显着的重塑,以促进DNA修复因子的进入和随后DNA损伤的去除。在这篇综述中,我们关注于细胞DNA修复途径如何克服染色质屏障,染色质环境如何重排以促进有效DNA修复的问题,哪些蛋白质介导了这种重组过程,以及染色质格局如何改变参与DNA损伤反应的调节。

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