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哺乳动物错配修复蛋白MSH2是正确的MRE11和RAD51重新定位以及电离辐射诱导的G2期有效细胞周期停滞所必需的。

The mammalian mismatch repair protein MSH2 is required for correct MRE11 and RAD51 relocalization and for efficient cell cycle arrest induced by ionizing radiation in G2 phase.

作者信息

Franchitto Annapaola, Pichierri Pietro, Piergentili Rita, Crescenzi Marco, Bignami Margherita, Palitti Fabrizio

机构信息

Laboratorio di Citogenetica Molecolare e Mutagenesi-DABAC, Università delgi Studi della Tuscia, Via S, Camillo de Lellis, Viterbo, Italy.

出版信息

Oncogene. 2003 Apr 10;22(14):2110-20. doi: 10.1038/sj.onc.1206254.

Abstract

In yeast, MSH2 plays an important role in mismatch repair (MMR) and recombination, whereas the function of the mammalian MSH2 protein in recombinational repair is not completely established. We examined the cellular responses of MSH2-deficient mouse cells to X-rays to clarify the role of MSH2 in recombinational repair. Cell survival, checkpoint functions and relocalization of the recombination-related proteins MRE11 and RAD51 were analysed in embryonic fibroblasts derived from MSH2(+/+) and MSH2(-/-) mice, and in MSH2-proficient and deficient mouse colorectal carcinoma cells. Loss of MSH2 function was found to be associated with reduction in cell survival following radiation, absence of either MRE11 or RAD51 relocalization and a higher level of X-ray-induced chromosomal damage specifically in G2-phase cells. Finally, MSH2(-/-) cells showed an inefficient early G2/M checkpoint, being arrested only transiently after irradiation before progressing into mitosis. Consistent with the premature release from the G2-phase arrest, activation of CHK1 was transient and CHK2 was not phosphorylated in synchronized MSH2-null cells. Our data suggest that an active MSH2 is required for a correct response to ionizing radiation-induced DNA damage in the G2 phase of the cell cycle, possibly connecting DSB repair to checkpoint signalling.

摘要

在酵母中,MSH2在错配修复(MMR)和重组过程中发挥重要作用,而哺乳动物MSH2蛋白在重组修复中的功能尚未完全明确。我们检测了MSH2缺陷型小鼠细胞对X射线的细胞反应,以阐明MSH2在重组修复中的作用。分析了源自MSH2(+/+)和MSH2(-/-)小鼠的胚胎成纤维细胞以及MSH2功能正常和缺陷的小鼠结肠癌细胞的细胞存活率、检查点功能以及重组相关蛋白MRE11和RAD51的重新定位情况。结果发现,MSH2功能缺失与辐射后细胞存活率降低、MRE11或RAD51均未发生重新定位以及特别是在G2期细胞中更高水平的X射线诱导的染色体损伤有关。最后,MSH2(-/-)细胞显示出早期G2/M检查点功能效率低下,在照射后仅短暂停滞,然后进入有丝分裂。与从G2期停滞中过早释放一致,在同步化的MSH2缺失细胞中,CHK1的激活是短暂的,CHK2未被磷酸化。我们的数据表明,活跃的MSH2是细胞周期G2期对电离辐射诱导的DNA损伤做出正确反应所必需的,可能将双链断裂修复与检查点信号联系起来。

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