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HeLa细胞中Rad51和Rad54响应复制后应激和DNA损伤的细胞动力学

Cellular Dynamics of Rad51 and Rad54 in Response to Postreplicative Stress and DNA Damage in HeLa Cells.

作者信息

Choi Eui-Hwan, Yoon Seobin, Hahn Yoonsoo, Kim Keun P

机构信息

Department of Life Sciences, Chung-Ang University, Seoul 06974, Korea.

出版信息

Mol Cells. 2017 Feb;40(2):143-150. doi: 10.14348/molcells.2017.2275. Epub 2017 Feb 13.

Abstract

Homologous recombination (HR) is necessary for maintenance of genomic integrity and prevention of various mutations in tumor suppressor genes and proto-oncogenes. Rad51 and Rad54 are key HR factors that cope with replication stress and DNA breaks in eukaryotes. Rad51 binds to single-stranded DNA (ssDNA) to form the presynaptic filament that promotes a homology search and DNA strand exchange, and Rad54 stimulates the strand-pairing function of Rad51. Here, we studied the molecular dynamics of Rad51 and Rad54 during the cell cycle of HeLa cells. These cells constitutively express Rad51 and Rad54 throughout the entire cell cycle, and the formation of foci immediately increased in response to various types of DNA damage and replication stress, except for caffeine, which suppressed the Rad51-dependent HR pathway. Depletion of Rad51 caused severe defects in response to postreplicative stress. Accordingly, HeLa cells were arrested at the G2-M transition although a small amount of Rad51 was steadily maintained in HeLa cells. Our results suggest that cell cycle progression and proliferation of HeLa cells can be tightly controlled by the abundance of HR proteins, which are essential for the rapid response to postreplicative stress and DNA damage stress.

摘要

同源重组(HR)对于维持基因组完整性以及预防肿瘤抑制基因和原癌基因中的各种突变是必需的。Rad51和Rad54是应对真核生物复制应激和DNA断裂的关键HR因子。Rad51与单链DNA(ssDNA)结合形成突触前细丝,促进同源性搜索和DNA链交换,而Rad54刺激Rad51的链配对功能。在这里,我们研究了HeLa细胞在细胞周期中Rad51和Rad54的分子动力学。这些细胞在整个细胞周期中持续表达Rad51和Rad54,并且除咖啡因(其抑制Rad51依赖性HR途径)外,对各种类型的DNA损伤和复制应激的反应中,病灶的形成立即增加。Rad51的缺失导致对复制后应激的严重缺陷。因此,HeLa细胞在G2-M期转换时停滞,尽管HeLa细胞中稳定维持少量的Rad51。我们的结果表明,HeLa细胞的细胞周期进程和增殖可以通过HR蛋白的丰度严格控制,HR蛋白对于对复制后应激和DNA损伤应激的快速反应至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edc0/5339505/b839af76126b/molce-40-2-143f1.jpg

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