首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Role of DNA damage-induced replication checkpoint in promoting lesion bypass by translesion synthesis in yeast.
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Role of DNA damage-induced replication checkpoint in promoting lesion bypass by translesion synthesis in yeast.

机译:DNA损伤诱导的复制检查点在酵母中通过病灶合成促进病灶旁路中的作用。

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摘要

Unrepaired DNA lesions in the template strand block the replication fork. In yeast, Mec1 protein kinase-mediated replication checkpoint prevents the breakdown of replication forks and maintains viability in DNA-damaged cells going through the S phase. By ensuring that the replisome does not dissociate from the fork stalled at the lesion site, the replication checkpoint presumably coordinates the action of lesion bypass processes with the replisome. However, it has remained unclear as to which of the lesion bypass processes-translesion synthesis (TLS) and/or template switching-depend on the activation of the replication checkpoint. Here we determine if the Mec1 kinase and the subunits of the checkpoint clamp and the clamp loader are required for TLS. We show that proficient TLS can occur in the absence of these checkpoint proteins in nucleotide excision repair (NER)-proficient cells; however, in the absence of NER, checkpoint protein-mediated Rev1 phosphorylation contributes to increasing the proficiency of DNA polymerase zeta-dependent TLS.
机译:模板链中未修复的DNA损伤会阻止复制叉。在酵母中,Mec1蛋白激酶介导的复制检查点可防止复制叉断裂,并在经历S期的DNA损伤细胞中保持活力。通过确保复制体不会与停滞在病变部位的叉子分离,复制检查点可能会与复制体协调病变旁路过程的作用。但是,对于哪个病变旁路过程,即病变合成(TLS)和/或模板切换,取决于复制检查点的激活,仍不清楚。在这里,我们确定TLS是否需要Mec1激酶以及检查点钳位和钳位加载器的亚基。我们表明,在缺乏核苷酸切除修复(NER)的细胞中缺少这些检查点蛋白的情况下,可能会发生熟练的TLS。但是,在不存在NER的情况下,检查点蛋白介导的Rev1磷酸化有助于提高DNA聚合酶zeta依赖性TLS的水平。

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