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基因组不稳定性与 γH2AX。

Genome Instability and γH2AX.

机构信息

Department of Biochemistry & Molecular Biology, Faculty of Biology, University of Athens, Athens 15784, Greece.

First Department of Pediatrics "Aghia Sophia" Children's Hospital, School of Medical, University of Athens, Athens 11527, Greece.

出版信息

Int J Mol Sci. 2017 Sep 15;18(9):1979. doi: 10.3390/ijms18091979.

Abstract

γH2AX has emerged in the last 20 years as a central player in the DDR (DNA damage response), with specificity for DSBs (double-strand breaks). Upon the generation of DSBs, γ-phosphorylation extends along megabase-long domains in chromatin, both sides of the damage. The significance of this mechanism is of great importance; it depicts a biological amplification mechanism where one DSB induces the γ-phosphorylation of thousands of H2AX molecules along megabaselong domains of chromatin, that are adjusted to the sites of DSBs. A sequential recruitment of signal transduction factors that interact to each other and become activated to further amplify the signal that will travel to the cytoplasm take place on the γ-phosphorylated chromatin. γ-phosphorylation is an early event in the DSB damage response, induced in all phases of the cell cycle, and participates in both DSB repair pathways, the HR (homologous recombination) and NHEJ (non-homologous end joining). Today, numerous studies support the notion that γH2AX functions as a guardian of the genome by preventing misrepaired DSB that increase the mutation load of the cells and may further lead to genome instability and carcinogenesis.

摘要

γH2AX 在过去的 20 年中成为 DDR(DNA 损伤反应)的核心参与者,对 DSB(双链断裂)具有特异性。在 DSB 的产生后,γ-磷酸化沿着染色质中的长达 megabase 的长域延伸,位于损伤的两侧。这个机制的重要性是巨大的;它描绘了一个生物放大机制,其中一个 DSB 诱导成千上万的 H2AX 分子沿着染色质的 megabase 长域发生 γ-磷酸化,这些分子被调整到 DSB 的位置。一系列相互作用并被激活以进一步放大信号的信号转导因子的顺序募集发生在 γ-磷酸化的染色质上。γ-磷酸化是 DSB 损伤反应的早期事件,发生在细胞周期的所有阶段,并参与两种 DSB 修复途径,HR(同源重组)和 NHEJ(非同源末端连接)。如今,许多研究支持 γH2AX 作为基因组守护者的观点,防止错误修复的 DSB 增加细胞的突变负荷,并可能进一步导致基因组不稳定和癌变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/503d/5618628/8b847238ad59/ijms-18-01979-g001.jpg

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