首页> 外文期刊>Molecular cancer research: MCR >Chromatin association of rad17 is required for an ataxia telangiectasia and rad-related kinase-mediated S-phase checkpoint in response to low-dose ultraviolet radiation.
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Chromatin association of rad17 is required for an ataxia telangiectasia and rad-related kinase-mediated S-phase checkpoint in response to low-dose ultraviolet radiation.

机译:rad17毛细血管扩张和rad相关激酶介导的S期检查点需要rad17的染色质缔合,以响应低剂量紫外线辐射。

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摘要

Activation of the S-phase checkpoint results in an inhibition of DNA synthesis in response to DNA damage. This is an active cellular response that may enhance cell survival and limit heritable genetic abnormalities. While much attention has been paid to elucidating signal transduction pathways regulating the ionizing radiation-induced S-phase checkpoint, less is known about whether UV radiation initiates the process and the mechanism controlling it. Here, we demonstrate that low-dose UV radiation activates an S-phase checkpoint that requires the ataxia telangiectasia and Rad-related kinase (ATR). ATR regulates the S-phase checkpoint through phosphorylation of the downstream target structural maintenance of chromosomal protein 1. Furthermore, the ATPase activity of Rad17 is crucial for its chromatin association and for the functional effects of ATR activation in response to low-dose UV radiation. These results suggest that low-dose UV radiation activates an S-phase checkpoint requiring ATR-mediated signal transduction pathway.
机译:S期检查点的激活导致DNA合成对DNA损伤的抑制作用。这是一种活跃的细胞反应,可以提高细胞存活率并限制遗传性遗传异常。尽管人们已经非常重视阐明调节电离辐射诱导的S相检查点的信号转导途径,但对于UV辐射是否引发该过程及其控制机制知之甚少。在这里,我们证明了低剂量紫外线辐射会激活S期检查点,该检查点需要共济失调毛细血管扩张和Rad相关激酶(ATR)。 ATR通过磷酸化染色体蛋白1的下游靶结构维持来调节S期检查点。此外,Rad17的ATPase活性对其染色质缔合和响应低剂量紫外线辐射的ATR激活的功能作用至关重要。这些结果表明,低剂量的紫外线辐射会激活S相检查点,从而需要ATR介导的信号转导途径。

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