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The Emerging Roles of ATP-Dependent Chromatin Remodeling Enzymes in Nucleotide Excision Repair

机译:ATP依赖的染色质重塑酶在核苷酸切除修复中的新兴作用。

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DNA repair in eukaryotic cells takes place in the context of chromatin, where DNA, including damaged DNA, is tightly packed into nucleosomes and higher order chromatin structures. Chromatin intrinsically restricts accessibility of DNA repair proteins to the damaged DNA and impacts upon the overall rate of DNA repair. Chromatin is highly responsive to DNA damage and undergoes specific remodeling to facilitate DNA repair. How damaged DNA is accessed, repaired and restored to the original chromatin state, and how chromatin remodeling coordinates these processes in vivo, remains largely unknown. ATP-dependent chromatin remodelers (ACRs) are the master regulators of chromatin structure and dynamics. Conserved from yeast to humans, ACRs utilize the energy of ATP to reorganize packing of chromatin and control DNA accessibility by sliding, ejecting or restructuring nucleosomes. Several studies have demonstrated that ATP-dependent remodeling activity of ACRs plays important roles in coordination of spatio-temporal steps of different DNA repair pathways in chromatin. This review focuses on the role of ACRs in regulation of various aspects of nucleotide excision repair (NER) in the context of chromatin. We discuss current understanding of ATP-dependent chromatin remodeling by various subfamilies of remodelers and regulation of the NER pathway in vivo.
机译:真核细胞中的DNA修复发生在染色质的背景下,其中包括受损DNA在内的DNA紧密地堆积在核小体和更高阶的染色质结构中。染色质从本质上限制了DNA修复蛋白对受损DNA的可及性,并影响了DNA修复的整体速度。染色质对DNA损伤高度敏感,并经过特定的重塑以促进DNA修复。受损的DNA如何获得,修复和恢复到原始染色质状态,以及染色质重塑如何在体内协调这些过程仍然是未知的。 ATP依赖的染色质重塑剂(ACR)是染色质结构和动力学的主要调节剂。从酵母到人类都是保守的,ACR利用ATP的能量重组染色质的堆积并通过滑动,弹出或重组核小体来控制DNA的可及性。多项研究表明,ACR的ATP依赖性重塑活性在染色质中不同DNA修复途径的时空步骤协调中起着重要作用。这篇综述集中在染色质的背景下,ACR在调节核苷酸切除修复(NER)各个方面的作用。我们讨论了目前对重塑剂的各个亚家族对ATP依赖的染色质重塑的理解以及体内NER途径的调控。

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