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Hyperactive Cdc2 kinase interferes with the response to broken replication forks by trapping S.pombe Crb2 in its mitotic T215 phosphorylated state

机译:高活性Cdc2激酶通过将S.pombe Crb2捕获在有丝分裂T215磷酸化状态中来干扰对断裂的复制叉的反应

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Although it is well established that Cdc2 kinase phosphorylates the DNA damage checkpoint protein Crb2(53BP1) in mitosis, the full impact of this modification is still unclear. The Tudor-BRCT domain protein Crb2 binds to modified histones at DNA lesions to mediate the activation of Chk1 by Rad3(ATR) kinase. We demonstrate here that fission yeast cells harbouring a hyperactive Cdc2(CDK1) mutation (cdc2.1w) are specifically sensitive to the topoisomerase 1 inhibitor camptothecin (CPT) which breaks DNA replication forks. Unlike wild-type cells, which delay only briefly in CPT medium by activating Chk1 kinase, cdc2.1w cells bypass Chk1 to enter an extended cell-cycle arrest which depends on Cds1 kinase. Intriguingly, the ability to bypass Chk1 requires the mitotic Cdc2 phosphorylation site Crb2-T215. This implies that the presence of the mitotic phosphorylation at Crb2-T215 channels Rad3 activity towards Cds1 instead of Chk1 when forks break in S phase. We also provide evidence that hyperactive Cdc2.1w locks cells in a G1-like DNA repair mode which favours non-homologous end joining over interchromosomal recombination. Taken together, our data support a model such that elevated Cdc2 activity delays the transition of Crb2 from its G1 to its G2 mode by blocking Srs2 DNA helicase and Casein Kinase 1 (Hhp1)
机译:尽管已经确定Cdc2激酶可在有丝分裂中使DNA损伤检查点蛋白Crb2(53BP1)磷酸化,但这种修饰的全部作用仍不清楚。 Tudor-BRCT域蛋白Crb2与DNA损伤处修饰的组蛋白结合,以介导Rad3(ATR)激酶激活Chk1。我们在这里证明,具有过度活跃的Cdc2(CDK1)突变(cdc2.1w)的裂变酵母细胞对拓扑异构酶1抑制剂喜树碱(CPT)特异敏感,它破坏了DNA复制叉。与野生型细胞(通过激活Chk1激酶仅在CPT培养基中短暂延迟)不同,cdc2.1w细胞绕过Chk1进入依赖于Cds1激酶的延长的细胞周期停滞期。有趣的是,绕过Chk1的能力需要有丝分裂的Cdc2磷酸化位点Crb2-T215。这意味着当叉子在S期断裂时,Crb2-T215处有丝分裂磷酸化的存在将Rad3活性引导至Cds1而不是Chk1。我们还提供证据表明,过度活跃的Cdc2.1w将细胞锁定在G1样的DNA修复模式中,该模式在染色体间重组中有利于非同源末端连接。综上所述,我们的数据支持一个模型,即通过阻止Srs2 DNA解旋酶和酪蛋白激酶1(Hhp1),提高的Cdc2活性可延迟Crb2从其G1到其G2模式的转变。

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