首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >ATR-Chk1-APC/CCdh1-dependent stabilization of Cdc7-ASK (Dbf4) kinase is required for DNA lesion bypass under replication stress
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ATR-Chk1-APC/CCdh1-dependent stabilization of Cdc7-ASK (Dbf4) kinase is required for DNA lesion bypass under replication stress

机译:复制压力下DNA损伤旁路需要Cdc7-ASK(Dbf4)激酶的ATR-Chk1-APC / CCdh1依赖性稳定

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摘要

Cdc7 kinase regulates DNA replication. However, its role in DNA repair and recombination is poorly understood. Here we describe a pathway that stabilizes the human Cdc7-ASK (activator of S-phase kinase; also called Dbf4), its regulation, and its function in cellular responses to compromised DNA replication. Stalled DNA replication evoked stabilization of the Cdc7-ASK (Dbf4) complex in a manner dependent on ATR-Chk1-mediated checkpoint signaling and its interplay with the anaphase-promoting complex/cyclosomeCdh1 (APC/CCdh1) ubiquitin ligase. Mechanistically, Chk1 kinase inactivates APC/CCdh1 through degradation of Cdh1 upon replication block, thereby stabilizing APC/CCdh1 substrates, including Cdc7-ASK (Dbf4). Furthermore, motif C of ASK (Dbf4) interacts with the N-terminal region of RAD18 ubiquitin ligase, and this interaction is required for chromatin binding of RAD18. Impaired interaction of ASK (Dbf4) with RAD18 disables foci formation by RAD18 and hinders chromatin loading of translesion DNA polymerase h. These findings define a novel mechanism that orchestrates replication checkpoint signaling and ubiquitin-proteasome machinery with the DNA damage bypass pathway to guard against replication collapse under conditions of replication stress.
机译:Cdc7激酶调节DNA复制。但是,人们对其在DNA修复和重组中的作用了解甚少。在这里,我们描述了一种稳定人类Cdc7-ASK(S期激酶的激活剂;也称为Dbf4)的途径,其调控及其在细胞对受损DNA复制的反应中的功能。停滞的DNA复制引起Cdc7-ASK(Dbf4)复合物的稳定,其依赖于ATR-Chk1介导的检查点信号及其与后期促进复合物/ cyclosomeCdh1(APC / CCdh1)泛素连接酶的相互作用。从机制上讲,Chk1激酶通过复制阻断时Cdh1的降解来灭活APC / CCdh1,从而稳定APC / CCdh1底物,包括Cdc7-ASK(Dbf4)。此外,ASK(Dbf4)的基序C与RAD18泛素连接酶的N末端区域相互作用,而这种相互作用是RAD18的染色质结合所必需的。 ASK(Dbf4)与RAD18的相互作用受损,会破坏RAD18的病灶形成,并阻碍跨病变DNA聚合酶h的染色质负载。这些发现定义了一种新颖的机制,该机制通过DNA损伤旁路途径来协调复制检查点信号和泛素-蛋白酶体机制,以防止复制压力条件下的复制崩溃。

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