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Downregulation of Wip1 phosphatase modulates the cellular threshold of DNA damage signaling in mitosis

机译:Wip1磷酸酶的下调调节有丝分裂中DNA损伤信号传导的细胞阈值

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摘要

Cells are constantly challenged by DNA damage and protect their genome integrity by activation of an evolutionary conserved DNA damage response pathway (DDR). A central core of DDR is composed of a spatiotemporally ordered net of post-translational modifications, among which protein phosphorylation plays a major role. Activation of checkpoint kinases ATM/ATR and Chk1/2 leads to a temporal arrest in cell cycle progression (checkpoint) and allows time for DNA repair. Following DNA repair, cells re-enter the cell cycle by checkpoint recovery. Wip1 phosphatase (also called PPM1D) dephosphorylates multiple proteins involved in DDR and is essential for timely termination of the DDR. Here we have investigated how Wip1 is regulated in the context of the cell cycle. We found that Wip1 activity is downregulated by several mechanisms during mitosis. Wip1 protein abundance increases from G1 phase to G2 and declines in mitosis. Decreased abundance of Wip1 during mitosis is caused by proteasomal degradation. In addition, Wip1 is phosphorylated at multiple residues during mitosis, and this leads to inhibition of its enzymatic activity. Importantly, ectopic expression of Wip1 reduced γH2AX staining in mitotic cells and decreased the number of 53BP1 nuclear bodies in G1 cells. We propose that the combined decrease and inhibition of Wip1 in mitosis decreases the threshold necessary for DDR activation and enables cells to react adequately even to modest levels of DNA damage encountered during unperturbed mitotic progression.
机译:细胞不断受到DNA损伤的挑战,并通过激活进化保守的DNA损伤反应途径(DDR)来保护其基因组完整性。 DDR的核心由翻译后修饰的时空顺序网组成,其中蛋白质磷酸化起主要作用。检查点激酶ATM / ATR和Chk1 / 2的激活导致细胞周期进程(检查点)暂时停滞,并有时间进行DNA修复。 DNA修复后,细胞会通过检查点恢复重新进入细胞周期。 Wip1磷酸酶(也称为PPM1D)使DDR中涉及的多种蛋白质脱磷酸,对于及时终止DDR至关重要。在这里,我们研究了在细胞周期中如何调控Wip1。我们发现在有丝分裂期间,Wip1的活性受到多种机制的下调。 Wip1蛋白丰度从G1期增加到G2,有丝分裂下降。蛋白酶体降解导致有丝分裂期间Wip1的丰度降低。此外,Wip1在有丝分裂过程中的多个残基处被磷酸化,这导致其酶活性受到抑制。重要的是,Wip1的异位表达减少了有丝分裂细胞中的γH2AX染色,并减少了G1细胞中53BP1核体的数量。我们提出,有丝分裂中Wip1的减少和抑制的结合降低了DDR激活所必需的阈值,并使细胞能够充分反应,甚至对在无干扰的有丝分裂进程中遇到的中等水平的DNA损伤也有足够的反应。

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