首页> 外文期刊>Cell cycle >Loss of p21 CDKN1A impairs entry to quiescence and activates a DNA damage response in normal fibroblasts induced to quiescence.
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Loss of p21 CDKN1A impairs entry to quiescence and activates a DNA damage response in normal fibroblasts induced to quiescence.

机译:p21 CDKN1A的丢失会损害进入静止状态,并激活诱导静止状态的正常成纤维细胞中的DNA损伤反应。

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摘要

The cell cycle inhibitor p21(CDKN1A) induces cell cycle arrest under different conditions, including senescence and terminal differentiation. Still debated is its involvement in the reversible transition from proliferation to a non-dividing quiescent state (G(0)), in which a significant role has been attributed to cell cycle inhibitor p27(CDKN1B). Here we provide evidence showing that high p21 protein levels are necessary to enter and maintain the quiescence state following contact inhibition and growth factor withdrawal. In fact, entry into quiescence was impaired, both in human fibroblasts in which p21 gene has been deleted, or protein expression knocked-down by RNA interference. Importantly, in the absence of p21, human fibroblasts activate a DNA damage-like signalling pathway, as shown by phosphorylation of histone H2AX and Chk1 proteins. In addition, we show that in the absence of p21, checkpoint is activated by an unscheduled entry into S phase, with a reduced efficiency in DNA maturation, in thepresence of high c-myc protein levels. These results highlight the role of p21 in counteracting inappropriate proliferation stimuli for genome stability maintenance.
机译:细胞周期抑制剂p21(CDKN1A)在不同条件下诱导细胞周期停滞,包括衰老和终末分化。仍然有争议的是它参与从增殖到非分裂静止状态(G(0))的可逆转变,其中重要的作用已归因于细胞周期抑制剂p27(CDKN1B)。在这里,我们提供的证据表明,在接触抑制和生长因子退出后,高p21蛋白水平是进入和维持静止状态所必需的。实际上,无论是在已删除p21基因的人类成纤维细胞中,还是在RNA干扰作用下敲低蛋白质表达的过程中,进入静止状态都受到了损害。重要的是,在不存在p21的情况下,人类成纤维细胞会激活DNA损伤样信号通路,如组蛋白H2AX和Chk1蛋白的磷酸化所示。此外,我们显示,在不存在p21的情况下,在高c-myc蛋白水平下,检查点会因计划外进入S期而被激活,从而降低了DNA成熟的效率。这些结果突出了p21在抵消不适当的增殖刺激以维持基因组稳定性中的作用。

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