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ATM/Wip1 activities at chromatin control Plk1 re-activation to determine G2 checkpoint duration

机译:ATM / Wip1活动染色质Plk1的控制再活跃确定G2检查点时间

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摘要

After DNA damage, the cell cycle is arrested to avoid propagation of mutations. Arrest in G2 phase is initiated by ATM-/ATR-dependent signaling that inhibits mitosis-promoting kinases such as Plk1. At the same time, Plk1 can counteract ATR-dependent signaling and is required for eventual resumption of the cell cycle. However, what determines when Plk1 activity can resume remains unclear. Here, we use FRET-based reporters to show that a global spread of ATM activity on chromatin and phosphorylation of ATM targets including KAP1 control Plk1 re-activation. These phosphorylations are rapidly counteracted by the chromatin-bound phosphatase Wip1, allowing cell cycle restart despite persistent ATM activity present at DNA lesions. Combining experimental data and mathematical modeling, we propose a model for how the minimal duration of cell cycle arrest is controlled. Our model shows how cell cycle restart can occur before completion of DNA repair and suggests a mechanism for checkpoint adaptation in human cells.
机译:DNA损伤后,细胞周期被逮捕避免传播的突变。阶段是由ATM / ATR-dependent抑制mitosis-promoting激酶的信号比如Plk1。抵消ATR-dependent信号和最终恢复所需的细胞周期。活动可以恢复尚不清楚。FRET-based记者表明全球传播ATM活动的染色质和磷酸化ATM的目标包括KAP1 Plk1的控制再活跃。抵消了chromatin-bound磷酸酶Wip1,使细胞周期启动尽管持久的ATM活动出席DNA损伤。结合实验数据和数学建模,我们提出一个模型的最小控制细胞周期阻滞的持续时间。模型显示了细胞周期如何重启可能发生之前完成的DNA修复和建议检查点机制在人类适应细胞。

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