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The roles of p27Kip1 and DNA damage signalling in the chemotherapy-induced delayed cell cycle checkpoint

机译:p27Kip1和DNA损伤信号在化疗诱导的延迟细胞周期检查点中的作用

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摘要

DNA lesions trigger the DNA damage response (DDR) machinery, which protects genomic integrity and sustains cellular survival. Increasing data underline the significance of the integrity of the DDR pathway in chemotherapy response. According to a recent work, persistent exposure of A549 lung carcinoma cells to doxorubicin induces an initial DDR-dependent checkpoint response, followed by a later DDR-independent, but p27Kip1-dependent one. Prompted by the above report and to better understand the involvement of the DDR signaling after chemotherapeutic stress, we examined the potential role of the canonical DDR pathway in A549 cells treated with doxorubicin. Exposure of A549 cells, prior to doxorubicin treatment, to ATM, ATR and DNA-PKcs inhibitors either alone or in various combinations, revealed that the earlier documented two-step response was DDR-dependent in both steps. Notably, inhibition of both ATM and ATR or selective inhibition of ATM or DNA-PKcs resulted in cell-cycle re-entry despite the increased levels of p27Kip1 at all time points analyzed. We further investigated the regulation of p27Kip1 protein levels in the particular setting. Our results showed that the protein status of p27Kip1 is mainly determined by p38-MAPK, whereas the role of SKP2 is less significant in the doxoroubicin-treated A549 cells. Cumulatively, we provide evidence that the DNA damage signaling is responsible for the prolonged cell cycle arrest observed after persistent chemotherapy-induced genotoxic stress. In conclusion, precise identification of the molecular mechanisms that are activated during the chemotherapeutic cycles could potentially increase the sensitization to the therapy applied.
机译:DNA损伤会触发DNA损伤反应(DDR)机制,从而保护基因组完整性并维持细胞存活。越来越多的数据强调了DDR通路完整性在化疗反应中的重要性。根据最近的一项研究,将A549肺癌细胞持续暴露于阿霉素会诱导最初的DDR依赖性检查点反应,然后引发后来的DDR依赖性但p27 Kip1 依赖性反应。由以上报告提示并为更好地理解化疗应激后DDR信号传导的参与,我们研究了经典DDR途径在阿霉素处理过的A549细胞中的潜在作用。在阿霉素处理之前,将A549细胞单独或以多种组合方式暴露于ATM,ATR和DNA-PKcs抑制剂,这表明较早记录的两步反应在两个步骤中均依赖于DDR。值得注意的是,尽管在所有分析的时间点上p27 Kip1 的水平均增加,但同时抑制ATM和ATR或选择性抑制ATM或DNA-PKcs仍会导致细胞周期重新进入。我们进一步研究了在特定环境中对p27 Kip1 蛋白质水平的调节。我们的结果表明,p27 Kip1 的蛋白质状态主要由p38-MAPK决定,而SKP2在多柔比星处理的A549细胞中的作用较小。累积地,我们提供的证据表明,DNA损伤信号传导是持续化学诱导的遗传毒性应激后观察到的延长的细胞周期停滞的原因。总之,精确鉴定在化学治疗周期中激活的分子机制可能会增加对所应用疗法的敏感性。

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