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Phosphorylation of the Budding Yeast 9-1-1 Complex Is Required for Dpb11 Function in the Full Activation of the UV-Induced DNA Damage Checkpoint

机译:Dpb11功能在紫外线诱导的DNA损伤检查点的完全激活中需要芽酵母9-1-1复合物的磷酸化

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Following genotoxic insults, eukaryotic cells trigger a signal transduction cascade known as the DNA damage checkpoint response, which involves the loading onto DNA of an apical kinase and several downstream factors. Chromatin modifications play an important role in recruiting checkpoint proteins. In budding yeast, methylated H3-K79 is bound by the checkpoint factor Rad9. Loss of Dot1 prevents H3-K79 methylation, leading to a checkpoint defect in the G1 phase of the cell cycle and to a reduction of checkpoint activation in mitosis, suggesting that another pathway contributes to Rad9 recruitment in M phase. We found that the replication factor Dpb11 is the keystone of this second pathway. dot1Δ dpb11-1 mutant cells are sensitive to UV or Zeocin treatment and cannot activate Rad53 if irradiated in M phase. Our data suggest that Dpb11 is held in proximity to damaged DNA through an interaction with the phosphorylated 9-1-1 complex, leading to Mec1-dependent phosphorylation of Rad9. Dpb11 is also phosphorylated after DNA damage, and this modification is lost in a nonphosphorylatable ddc1-T602A mutant. Finally, we show that, in vivo, Dpb11 cooperates with Dot1 in promoting Rad9 phosphorylation but also contributes to the full activation of Mec1 kinase.
机译:受到基因毒性伤害后,真核细胞触发信号转导级联反应,称为DNA损伤检查点反应,该反应涉及将顶端激酶和一些下游因子加载到DNA上。染色质修饰在募集检查点蛋白中起重要作用。在发芽酵母中,甲基化的H3-K79与检查点因子Rad9结合。 Dot1的丢失会阻止H3-K79甲基化,从而导致细胞周期G 1 期的检查点缺陷,并导致有丝分裂中检查点的激活减少,这表明另一条途径有助于M中Rad9的募集相。我们发现复制因子Dpb11是第二条途径的基石。 dot1 Δ dpb11 - 1 突变细胞对UV或Zeocin处理敏感,如果在M期照射,则不能激活Rad53。我们的数据表明,Dpb11通过与磷酸化9-1-1复合物相互作用而保持在受损DNA的附近,从而导致Rad9的Mec1依赖性磷酸化。 DNA损伤后,Dpb11也被磷酸化,这种修饰在不可磷酸化的 ddc1 - T602A 突变体中丢失。最后,我们表明,在体内,Dpb11与Dot1协同作用可促进Rad9磷酸化,但也有助于Mec1激酶的完全活化。

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