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A Mitotic Phosphorylation Feedback Network Connects Cdk1, Plk1, 53BP1, and Chk2 to Inactivate the G2/M DNA Damage Checkpoint

机译:有丝分裂磷酸化反馈网络连接Cdk1,Plk1,53BP1和Chk2以失活G2 / M DNA损伤检查点

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摘要

DNA damage checkpoints arrest cell cycle progression to facilitate DNA repair. The ability to survive genotoxic insults depends not only on the initiation of cell cycle checkpoints but also on checkpoint maintenance. While activation of DNA damage checkpoints has been studied extensively, molecular mechanisms involved in sustaining and ultimately inactivating cell cycle checkpoints are largely unknown. Here, we explored feedback mechanisms that control the maintenance and termination of checkpoint function by computationally identifying an evolutionary conserved mitotic phosphorylation network within the DNA damage response. We demonstrate that the non-enzymatic checkpoint adaptor protein 53BP1 is an in vivo target of the cell cycle kinases Cyclin-dependent kinase-1 and Polo-like kinase-1 (Plk1). We show that Plk1 binds 53BP1 during mitosis and that this interaction is required for proper inactivation of the DNA damage checkpoint. 53BP1 mutants that are unable to bind Plk1 fail to restart the cell cycle after ionizing radiation-mediated cell cycle arrest. Importantly, we show that Plk1 also phosphorylates the 53BP1-binding checkpoint kinase Chk2 to inactivate its FHA domain and inhibit its kinase activity in mammalian cells. Thus, a mitotic kinase-mediated negative feedback loop regulates the ATM-Chk2 branch of the DNA damage signaling network by phosphorylating conserved sites in 53BP1 and Chk2 to inactivate checkpoint signaling and control checkpoint duration.
机译:DNA损伤检查点可阻止细胞周期进程,以促进DNA修复。遗传毒性损害的生存能力不仅取决于细胞周期检查点的启动,还取决于检查点的维护。尽管已经广泛研究了DNA损伤检查点的激活,但在维持和最终使细胞周期检查点失活中涉及的分子机制尚不清楚。在这里,我们探索了反馈机制,该机制通过计算确定DNA损伤反应中的进化保守有丝分裂磷酸化网络来控制检查点功能的维持和终止。我们证明非酶检查点适配器蛋白53BP1是细胞周期激酶细胞周期蛋白依赖性激酶1和Polo样激酶1(Plk1)的体内目标。我们显示Plk1在有丝分裂过程中结合53BP1,这种相互作用是DNA损伤检查点正确失活所必需的。电离辐射介导的细胞周期停滞后,无法结合Plk1的53BP1突变体无法重新启动细胞周期。重要的是,我们显示Plk1还可以使结合53BP1的检查点激酶Chk2磷酸化,从而使其FHA结构域失活并抑制其在哺乳动物细胞中的激酶活性。因此,有丝分裂激酶介导的负反馈环通过使53BP1和Chk2中的保守位点磷酸化来失活检查点信号和控制检查点持续时间,从而调节DNA损伤信号网络的ATM-Chk2分支。

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