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紫外线诱导的 G2 检验点依赖于 p38MAPK 和 ATR-Chk1 通路的最小激活。

UV-induced G2 checkpoint depends on p38 MAPK and minimal activation of ATR-Chk1 pathway.

机构信息

Department of Cell Biology and Genetics, Cancer Genomics Center, Erasmus Medical Center, 3000 CA Rotterdam, The Netherlands.

出版信息

J Cell Sci. 2013 May 1;126(Pt 9):1923-30. doi: 10.1242/jcs.118265. Epub 2013 Feb 27.

Abstract

In response to UV light, single-stranded DNA intermediates coated with replication protein A (RPA) are generated, which trigger the ATR-Chk1 checkpoint pathway. Recruitment and/or activation of several checkpoint proteins at the damaged sites is important for the subsequent cell cycle arrest. Surprisingly, upon UV irradiation, Rad9 and RPA only minimally accumulate at DNA lesions in G2 phase, suggesting that only a few single-stranded DNA intermediates are generated. Also, little phosphorylated Chk1 is observed in G2 phase after UV-irradiation, and UV light fails to elicit efficient accumulation of typical DNA damage response proteins at sites of damage in this phase. By contrast, p38 MAPK is phosphorylated in G2 phase cells after UV damage. Interestingly, despite the lack of an obvious activation of the ATR-Chk1 pathway, only the combined inhibition of the ATR- and p38-dependent pathways results in a complete abrogation of the UV-induced G2/M arrest. This suggests that UV light induces less hazardous lesions in G2 phase or that lesions created in this phase are less efficiently processed, resulting in a low activation of the ATR-Chk1 pathway. UV-induced G2 checkpoint activation in this situation therefore relies on signalling via the p38 MAPK and ATR-Chk1 signalling cascades.

摘要

对紫外光的反应,包裹复制蛋白 A(RPA)的单链 DNA 中间体被生成,这触发了 ATR-Chk1 检查点途径。在损伤部位招募和/或激活几个检查点蛋白对于随后的细胞周期停滞很重要。令人惊讶的是,在紫外光照射后,Rad9 和 RPA 在 G2 期的 DNA 损伤部位仅少量积累,表明只有少数单链 DNA 中间体被生成。此外,在 UV 照射后,G2 期观察到的磷酸化 Chk1 很少,并且 UV 光不能在该期的损伤部位有效积累典型的 DNA 损伤反应蛋白。相比之下,p38 MAPK 在 UV 损伤后的 G2 期细胞中被磷酸化。有趣的是,尽管 ATR-Chk1 途径没有明显激活,但只有 ATR 和 p38 依赖性途径的联合抑制才导致 UV 诱导的 G2/M 期阻滞完全消除。这表明,紫外光在 G2 期诱导的是危害性较小的损伤,或者在这个时期形成的损伤处理效率较低,导致 ATR-Chk1 途径的低激活。因此,在这种情况下,UV 诱导的 G2 期检查点激活依赖于 p38 MAPK 和 ATR-Chk1 信号级联的信号传递。

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