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Signaling pathways of replication stress in yeast

机译:酵母复制应力的信号通路

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摘要

Eukaryotic cells activate the S-phase checkpoint in response to a variety of events affecting the progression of replication forks, collectively referred to as replication stress. This signaling pathway is divided in two branches: the DNA damage checkpoint (DDC) and the DNA replication checkpoint (DRC). Both pathways are activated by the sensor kinase Mec1 and converge on the effector kinase Rad53. However, the DDC operates throughout the cell cycle and depends on the checkpoint mediator Rad9 to activate Rad53, whereas the DRC is specific to S phase and is mediated by Mrc1 and other fork components to signal replication impediments. In this review, we summarize current knowledge on these two pathways, with a focus on the budding yeast Saccharomyces cerevisiae, in which many important aspects of the replication stress response were discovered. We also discuss the differences and similarities between DDC and DRC and speculate on how these pathways cooperate to ensure the complete and faithful duplication of the yeast genome under various replication stress conditions.
机译:真核细胞响应于影响复​​制叉的进展的各种事件激活S相检查点,共同称为复制应力。该信号传导途径分为两个分支:DNA损伤检查点(DDC)和DNA复制检查点(DRC)。这两种途径由传感器激酶MEC1激活并在效应子激酶Rad53上收敛。然而,DDC在整个细胞周期中运行,并且取决于检查点中介RAD9以激活RAD53,而DRC特定于S相,并且由MRC1和其他叉组件介导的信号复制障碍。在本综述中,我们总结了关于这两种途径的目前的知识,重点是萌芽酵母酿酒酵母酿酒酵母,其中发现了复制应力反应的许多重要方面。我们还讨论了DDC和DRC之间的差异和相似性,并推测了这些途径如何合作,以确保在各种复制应力条件下确保酵母基因组的完全和忠实的复制。

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