Institute of Molecular and Cell Biology, Agency for Science, Technology and Research (A*STAR), Proteos, 61 Biopolis Drive, Singapore.
Bioprocessing Technology Institute, A*STAR, Singapore.
Nucleic Acids Res. 2020 Jun 19;48(11):6092-6107. doi: 10.1093/nar/gkaa355.
The DNA damage checkpoint halts cell cycle progression in G2 in response to genotoxic insults. Central to the execution of cell cycle arrest is the checkpoint-induced stabilization of securin-separase complex (yeast Pds1-Esp1). The checkpoint kinases Chk1 and Chk2 (yeast Chk1 and Rad53) are thought to critically contribute to the stability of securin-separase complex by phosphorylation of securin, rendering it resistant to proteolytic destruction by the anaphase promoting complex (APC). Dun1, a Rad53 paralog related to Chk2, is also essential for checkpoint-imposed arrest. Dun1 is required for the DNA damage-induced transcription of DNA repair genes; however, its role in the execution of cell cycle arrest remains unknown. Here, we show that Dun1's role in checkpoint arrest is independent of its involvement in the transcription of repair genes. Instead, Dun1 is necessary to prevent Pds1 destruction during DNA damage in that the Dun1-deficient cells degrade Pds1, escape G2 arrest and undergo mitosis despite the presence of checkpoint-active Chk1 and Rad53. Interestingly, proteolytic degradation of Pds1 in the absence of Dun1 is mediated not by APC but by the HECT domain-containing E3 ligase Rsp5. Our results suggest a regulatory scheme in which Dun1 prevents chromosome segregation during DNA damage by inhibiting Rsp5-mediated proteolytic degradation of securin Pds1.
DNA 损伤检查点会响应遗传毒性损伤,在 G2 期阻止细胞周期进程。细胞周期阻滞的执行核心是检查点诱导的 securin-separase 复合物(酵母 Pds1-Esp1)的稳定。检查点激酶 Chk1 和 Chk2(酵母 Chk1 和 Rad53)被认为通过磷酸化 securin 对 securin-separase 复合物的稳定性起着至关重要的作用,使其抵抗后期促进复合物(APC)的蛋白水解破坏。与 Chk2 相关的 Rad53 同源物 Dun1 对于检查点引起的阻滞也是必不可少的。Dun1 对于 DNA 损伤诱导的 DNA 修复基因的转录是必需的;然而,其在细胞周期阻滞执行中的作用仍然未知。在这里,我们表明 Dun1 在检查点阻滞中的作用与其参与修复基因的转录是独立的。相反,Dun1 有必要防止 DNA 损伤过程中 Pds1 的破坏,因为在缺乏 Dun1 的情况下,细胞降解 Pds1,逃避 G2 期阻滞并进行有丝分裂,尽管存在检查点活性的 Chk1 和 Rad53。有趣的是,在缺乏 Dun1 的情况下,Pds1 的蛋白水解降解不是由 APC 介导的,而是由含有 HECT 结构域的 E3 连接酶 Rsp5 介导的。我们的结果表明了一种调控方案,其中 Dun1 通过抑制 Rsp5 介导的 securin-Pds1 的蛋白水解降解来防止 DNA 损伤期间的染色体分离。