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首页> 外文期刊>Journal of Cell Science >p130/p107/p105Rb-dependent transcriptional repression during DNA-damage-induced cell-cycle exit at G2
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p130/p107/p105Rb-dependent transcriptional repression during DNA-damage-induced cell-cycle exit at G2

机译:DNA损伤诱导的G2细胞周期退出时,p130 / p107 / p105Rb依赖性转录抑制

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摘要

The progression of normal cells from G2 into mitosis is stably blocked when their DNA is damaged. Tumor cells lacking p53 arrest only transiently in G2, but eventually enter mitosis. We show that an important component of the stable G2 arrest in normal cells is the transcriptional repression of more than 20 genes encoding proteins needed to enter into and progress through mitosis. Studies from a number of labs including our own have shown that, by inducing p53 and p21/WAF1, DNA damage can trigger RB-family-dependent transcriptional repression. Our studies reported here show that p130 and p107 play a key role in transcriptional repression of genes required for G2 and M in response to DNA damage. For plk1, repression is partially abrogated by loss of p130 and p107, and is completely abrogated by loss of all three RB-family proteins. Mouse cells lacking RB-family proteins do not accumulate with a 4N content of DNA when exposed to adriamycin, suggesting that all three RB-family proteins contribute to G2 arrest in response to DNA damage. Stable arrest in the presence of functional p53-to-RB signaling is probably due to the ability of cells to exit the cell cycle from G2, a conclusion supported by out observation that K167, a marker of cell-cycle entry, is downregulated in both G1 and G2 in a p53-dependent manner.
机译:当正常细胞的DNA受损时,其从G2进入有丝分裂的过程被稳定地阻止。缺乏p53的肿瘤细胞仅在G2中短暂停滞,但最终进入有丝分裂。我们表明,在正常细胞中稳定的G2逮捕的重要组成部分是20多个基因的转录抑制,这些基因编码进入和通过有丝分裂所需的蛋白质。来自包括我们实验室在内的许多实验室的研究表明,通过诱导p53和p21 / WAF1,DNA损伤可以触发RB家族依赖性转录抑制。我们的研究报告表明,p130和p107在转录抑制G2和M所需的基因以响应DNA损伤方面起着关键作用。对于plk1,p130和p107的缺失会部分消除抑制,而所有三种RB家族蛋白的缺失会完全消除抑制。缺乏RB家族蛋白的小鼠细胞在暴露于阿霉素时不会积聚4N的DNA,这表明这三种RB家族蛋白均响应DNA损伤而导致G2阻滞。在存在功能性p53到RB信号传导的情况下,稳定的停滞可能是由于细胞从G2退出细胞周期的能力,这一结论得到了观察到的支持,即细胞周期进入的标志物K167在两个基因中均被下调。 G1和G2依赖于p53。

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