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Pulsatile MAPK Signaling Modulates p53 Activity to Control Cell Fate Decisions at the G2 Checkpoint for DNA Damage

机译:Pulsatile MAPK信号传导调制P53活性以控制G2检查点的细胞命运决策以进行DNA损伤

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Summary: Cell-autonomous changes in p53 expression govern the duration and outcome of cell-cycle arrest at the G2 checkpoint for DNA damage. Here, we report that mitogen-activated protein kinase (MAPK) signaling integrates extracellular cues with p53 dynamics to determine cell fate at the G2 checkpoint. Optogenetic tools and quantitative cell biochemistry reveal transient oscillations in MAPK activity dependent on ataxia-telangiectasia-mutated kinase after DNA damage. MAPK inhibition alters p53 dynamics and p53-dependent gene expression after checkpoint enforcement, prolonging G2 arrest. In contrast, sustained MAPK signaling induces the phosphorylation of CDC25C, and consequently, the accumulation of pro-mitotic kinases, thereby relaxing checkpoint stringency and permitting cells to evade prolonged G2 arrest and senescence induction. We propose a model in which this MAPK-mediated mechanism integrates extracellular cues with cell-autonomous p53-mediated signals, to safeguard genomic integrity during tissue proliferation. Early steps in oncogene-driven carcinogenesis may imbalance this tumor-suppressive mechanism to trigger genome instability. : Cells coordinate repair and cell-cycle machinery in response to DNA damage to safeguard genomic integrity and tissue homeostasis. De et al. find that two opposing and pulsatile signals of pro-survival and pro-arrest networks permit cells to set a balance between distinct cell fates. Keywords: p53, MAPK/ERK pathway, DNA damage response, checkpoint signalling, signalling dynamics, cellular decisions, checkpoint fidelity
机译:概述:P53表达中的细胞 - 自主变化控制在DNA损伤的G2检查点处的细胞周期停滞的持续时间和结果。在此,我们报告了丝裂原激活的蛋白激酶(MAPK)信号传导与P53动力学的细胞外提示集成,以确定G2检查点的细胞命运。致光学工具和定量细胞生物化学在DNA损伤损伤后依赖于Ataxia-Telanciectasia-突变激酶的MAPK活性中的瞬态振荡。 MAPK抑制改变了Chectpoint执法后的P53动态和P53依赖性基因表达,延长了G2逮捕。相反,持续的MAPK信号传导诱导CDC25C的磷酸化,因此,促致细胞激酶的积累,从而放松检查点严格性并允许细胞避免延长G2抑制和衰老诱导。我们提出了一种模型,其中该MAPK介导机制与细胞 - 自主式P53介导的信号集成细胞外提示,以在组织增殖期间保护基因组完整性。群体驱动的致癌物中的早期步骤可能不平衡这种肿瘤抑制机制以引发基因组不稳定性。 :细胞坐标修复和细胞周期机械响应DNA损伤保护基因组完整性和组织稳重。德等。发现Pro-Survival和Pro-Arcket网络的两个相反和脉动信号允许细胞在不同的细胞置命中设定平衡。关键词:P53,MAPK / ERK途径,DNA损伤响应,检查点信令,信令动力学,蜂窝决策,检查站保真度

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