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Site-specific phosphorylation of the DNA damage response mediator Rad9 by cyclin-dependent kinases regulates activation of checkpoint kinase 1

机译:细胞周期蛋白依赖性激酶对DNA损伤反应介体Rad9的位点特异性磷酸化调节检查点激酶1的激活

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摘要

The mediators of the DNA damage response (DDR) are highly phosphorylated by kinases that control cell proliferation, but little is known about the role of this regulation. Here we show that cell cycle phosphorylation of the prototypical DDR mediator Saccharomyces cerevisiae Rad9 depends on cyclin-dependent kinase (CDK) complexes. We find that a specific G2/M form of Cdc28 can phosphorylate in vitro the N-terminal region of Rad9 on nine consensus CDK phosphorylation sites. We show that the integrity of CDK consensus sites and the activity of Cdc28 are required for both the activation of the Chk1 checkpoint kinase and its interaction with Rad9. We have identified T125 and T143 as important residues in Rad9 for this Rad9/Chk1 interaction. Phosphorylation of T143 is the most important feature promoting Rad9/Chk1 interaction, while the much more abundant phosphorylation of the neighbouring T125 residue impedes the Rad9/Chk1 interaction. We suggest a novel model for Chk1 activation where Cdc28 regulates the constitutive interaction of Rad9 and Chk1. The Rad9/Chk1 complex is then recruited at sites of DNA damage where activation of Chk1 requires additional DDR-specific protein kinases.
机译:DNA损伤反应(DDR)的介体被控制细胞增殖的激酶高度磷酸化,但对该调节作用的了解却很少。在这里,我们显示原型DDR介体酿酒酵母Rad9的细胞周期磷酸化取决于细胞周期蛋白依赖性激酶(CDK)的复杂性。我们发现,Cdc28的特定G2 / M形式可以在9个共有CDK磷酸化位点上,对Rad9的N末端区域进行体外磷酸化。我们显示,CDK共有位点的完整性和Cdc28的活性是激活Chk1检查点激酶及其与Rad9相互作用所必需的。我们已经确定T125和T143是Rad9 / Chk1相互作用的Rad9中重要的残基。 T143的磷酸化是促进Rad9 / Chk1相互作用的最重要特征,而相邻T125残基的磷酸化程度更高则阻碍了Rad9 / Chk1相互作用。我们建议Chk1激活的新型模型,其中Cdc28调节Rad9和Chk1的本构相互作用。然后,在DNA损伤部位招募Rad9 / Chk1复合体,在此部位Chk1的激活需要额外的DDR特异性蛋白激酶。

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