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A mitotic CDK5-PP4 phospho-signaling cascade primes 53BP1 for DNA repair in G1

机译:有丝分裂的CDK5-PP4磷光信号级联Primes 53bp1用于G1中的DNA修复

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Mitotic cells attenuate the?DNA damage response (DDR) by phosphorylating 53BP1, a critical DDR mediator, to prevent its localization to damaged chromatin. Timely dephosphorylation of 53BP1 is critical for genome integrity, as premature recruitment of 53BP1 to DNA lesions impairs mitotic fidelity. Protein phosphatase 4 (PP4) dephosphorylates 53BP1 in late mitosis to allow its recruitment to DNA lesions in G1. How cells appropriately dephosphorylate 53BP1, thereby restoring DDR, is unclear. Here, we elucidate the underlying mechanism of kinetic control of 53BP1 dephosphorylation in mitosis. We demonstrate that CDK5, a kinase primarily functional in post-mitotic neurons, is active in late mitotic phases in non-neuronal cells and directly phosphorylates PP4R3β, the PP4 regulatory subunit that recognizes 53BP1. Specific inhibition of CDK5 in mitosis abrogates PP4R3β phosphorylation?and abolishes its?recognition and dephosphorylation of 53BP1, ultimately preventing the localization of 53BP1 to damaged chromatin. Our results establish CDK5 as a regulator of 53BP1 recruitment.
机译:有丝分裂细胞通过磷酸化53bp1,临界DDR介体验证αDNA损伤响应(DDR),以防止其定位受损染色质。及时的去磷酸化53bp1对于基因组完整性至关重要,如53bp1到DNA病变的过早募集损害有丝分裂保真度。蛋白质磷酸酶4(PP4)在晚期有丝分裂中去磷酸盐53bp1,以允许其募集在G1中的DNA病变。 Cells适当地去磷酸盐53bp1的细胞如何尚不清楚。在这里,我们阐明了动力学控制的动力学控制的潜在机制,有丝分裂中的53bp1去磷酸化。我们证明CDK5主要在短期内神经元在非神经元细胞中的晚期有丝分子阶段中活性激酶,并直接磷酸化PP4R3β,PP4调节子单元识别53bp1。特异性抑制CDK5在丝尾突中消除了PP4R3β磷酸化?并消除了它的αα和去磷酸化53bp1,最终阻止53bp1的定位受损染色质。我们的结果建立了CDK5,作为53bp1招募的监管机构。

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