Division of Cancer Biology and Genetics, Cancer Research Institute, Queen's University, Kingston, Ontario, Canada ; Department of Biomedical and Molecular Sciences, Queen's University, Kingston, Ontario, Canada.
Division of Cancer Biology and Genetics, Cancer Research Institute, Queen's University, Kingston, Ontario, Canada ; Department of Pathology and Molecular Medicine, Queen's University, Kingston, Ontario, Canada.
PLoS One. 2013 Dec 20;8(12):e85859. doi: 10.1371/journal.pone.0085859. eCollection 2013.
Genomic integrity is preserved by checkpoints, which act to delay cell cycle progression in the presence of DNA damage or replication stress. The heterotrimeric Rad9-Rad1-Hus1 (9-1-1) complex is a PCNA-like clamp that is loaded onto DNA at structures resulting from damage and is important for initiating and maintaining the checkpoint response. Rad9 possesses a C-terminal tail that is phosphorylated constitutively and in response to cell cycle position and DNA damage. Previous studies have identified tousled-like kinase 1 (TLK1) as a kinase that may modify Rad9. Here we show that Rad9 is phosphorylated in a TLK-dependent manner in vitro and in vivo, and that T355 within the C-terminal tail is the primary targeted residue. Phosphorylation of Rad9 at T355 is quickly reduced upon exposure to ionizing radiation before returning to baseline later in the damage response. We also show that TLK1 and Rad9 interact constitutively, and that this interaction is enhanced in chromatin-bound Rad9 at later stages of the damage response. Furthermore, we demonstrate via siRNA-mediated depletion that TLK1 is required for progression through S-phase in normally cycling cells, and that cells lacking TLK1 display a prolonged G2/M arrest upon exposure to ionizing radiation, a phenotype that is mimicked by over-expression of a Rad9-T355A mutant. Given that TLK1 has previously been shown to be transiently inactivated upon phosphorylation by Chk1 in response to DNA damage, we propose that TLK1 and Chk1 act in concert to modulate the phosphorylation status of Rad9, which in turn serves to regulate the DNA damage response.
基因组完整性由检查点来维护,当存在 DNA 损伤或复制压力时,这些检查点会延迟细胞周期的进程。异源三聚体 Rad9-Rad1-Hus1(9-1-1)复合物是一种 PCNA 样夹子,它在损伤引起的结构上加载到 DNA 上,对于启动和维持检查点反应很重要。Rad9 具有一个 C 端尾巴,该尾巴在细胞周期位置和 DNA 损伤的影响下持续和响应性地被磷酸化。先前的研究已经确定了绒毛状样激酶 1(TLK1)是一种可能修饰 Rad9 的激酶。在这里,我们表明 Rad9 在体外和体内以 TLK 依赖性方式发生磷酸化,并且 C 端尾部内的 T355 是主要的靶向残基。暴露于电离辐射后,Rad9 在 T355 处的磷酸化迅速减少,然后在损伤反应的后期恢复到基线水平。我们还表明,TLK1 和 Rad9 持续相互作用,并且这种相互作用在损伤反应的后期在染色质结合的 Rad9 中增强。此外,我们通过 siRNA 介导的耗竭证明 TLK1 是正常细胞周期中通过 S 期所必需的,并且缺乏 TLK1 的细胞在暴露于电离辐射后显示出延长的 G2/M 期阻滞,这种表型类似于 Rad9-T355A 突变体的过表达。鉴于 TLK1 先前已被证明在 DNA 损伤响应时被 Chk1 磷酸化短暂失活,我们提出 TLK1 和 Chk1 协同作用来调节 Rad9 的磷酸化状态,这反过来又有助于调节 DNA 损伤反应。