Khan Saman, Ahmed Shakil
Molecular and Structural Biology Division, CSIR- Central Drug Research Institute, Jankipuram Extension, Lucknow, India.
PLoS One. 2015 Mar 30;10(3):e0124063. doi: 10.1371/journal.pone.0124063. eCollection 2015.
Besides being a mediator of initiation of DNA replication, DNA polymerase α plays a key role in chromosome maintenance. Swi7H4, a novel temperature sensitive mutant of DNA polymerase α was shown to be defective in transcriptional silencing at the mating type centromere and telomere loci. It is also required for the establishment of chromatin state that can recruit the components of the heterochromatin machinery at these regions. Recently the role of DNA polymerase α in the S-phase alkylation damage response in S. pombe has also been studied. Here we investigate whether defects generated by swi7H4, a mutant allele of DNA polymerase α can activate a checkpoint response. We show that swi7H4 exhibit conditional synthetic lethality with chk1 null mutant and the double mutant of swi7H4 with chk1 deletion aggravate the chromosome segregation defects. More importantly swi7H4 mutant cells delay the mitotic progression at non permissive temperature that is mediated by checkpoint protein kinase Chk1. In addition we show that, in the swi7H4 mutant background, cells accumulate DNA damage at non permissive temperature activating the checkpoint kinase protein Chk1. Further, we observed synthetic lethality between swi7H4 and a number of genes involved in DNA repair pathway at semi permissive temperature. We summarize that defects in swi7H4 mutant results in DNA damage that delay mitosis in a Chk1 dependent manner that also require the damage repair pathway for proper recovery.
除了作为DNA复制起始的介导因子外,DNA聚合酶α在染色体维持中也起着关键作用。Swi7H4是DNA聚合酶α的一种新型温度敏感突变体,已被证明在交配型着丝粒和端粒位点的转录沉默中存在缺陷。在这些区域建立能够招募异染色质机制成分的染色质状态也需要它。最近,也对DNA聚合酶α在粟酒裂殖酵母S期烷基化损伤反应中的作用进行了研究。在这里,我们研究DNA聚合酶α的突变等位基因swi7H4产生的缺陷是否能激活检查点反应。我们发现swi7H4与chk1缺失突变体表现出条件性合成致死性,并且swi7H4与chk1缺失的双突变体会加剧染色体分离缺陷。更重要的是,swi7H4突变细胞在非允许温度下会延迟有丝分裂进程,这是由检查点蛋白激酶Chk1介导的。此外,我们表明,在swi7H4突变背景下,细胞在非允许温度下会积累DNA损伤,从而激活检查点激酶蛋白Chk1。此外,我们观察到在半允许温度下,swi7H4与一些参与DNA修复途径的基因之间存在合成致死性。我们总结认为,swi7H4突变体中的缺陷会导致DNA损伤,以依赖Chk1的方式延迟有丝分裂,并且还需要损伤修复途径才能正常恢复。