基因组稳定性中的染色质动力学:在抑制内源性DNA损伤和促进DNA修复中的作用
Chromatin Dynamics in Genome Stability: Roles in Suppressing Endogenous DNA Damage and Facilitating DNA Repair.
作者信息
Nair Nidhi, Shoaib Muhammad, Sørensen Claus Storgaard
机构信息
Biotech Research and Innovation Centre (BRIC), University of Copenhagen, Ole Maaløes Vej 5, Copenhagen N 2200, Denmark.
出版信息
Int J Mol Sci. 2017 Jul 10;18(7):1486. doi: 10.3390/ijms18071486.
Genomic DNA is compacted into chromatin through packaging with histone and non-histone proteins. Importantly, DNA accessibility is dynamically regulated to ensure genome stability. This is exemplified in the response to DNA damage where chromatin relaxation near genomic lesions serves to promote access of relevant enzymes to specific DNA regions for signaling and repair. Furthermore, recent data highlight genome maintenance roles of chromatin through the regulation of endogenous DNA-templated processes including transcription and replication. Here, we review research that shows the importance of chromatin structure regulation in maintaining genome integrity by multiple mechanisms including facilitating DNA repair and directly suppressing endogenous DNA damage.
基因组DNA通过与组蛋白和非组蛋白包装在一起而被压缩成染色质。重要的是,DNA可及性受到动态调节以确保基因组稳定性。这在对DNA损伤的反应中得到体现,其中基因组损伤附近的染色质松弛有助于促进相关酶进入特定DNA区域进行信号传导和修复。此外,最近的数据强调了染色质通过调节包括转录和复制在内的内源性DNA模板化过程在基因组维持中的作用。在这里,我们回顾了一些研究,这些研究表明染色质结构调节通过多种机制在维持基因组完整性方面的重要性,这些机制包括促进DNA修复和直接抑制内源性DNA损伤。