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Orchestration of the S-phase and DNA damage checkpoint pathways by replication forks from early origins

机译:早期起源的复制叉对S期和DNA损伤检查点途径的编排

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The S-phase checkpoint activated at replication forks coordinates DNA replication when forks stall because of DNA damage or low deoxyribonucleotide triphosphate pools. We explore the involvement of replication forks in coordinating the S-phase checkpoint using dun1Δ cells that have a defect in the number of stalled forks formed from early origins and are dependent on the DNA damage Chk1p pathway for survival when replication is stalled. We show that providing additional origins activated in early S phase and establishing a paused fork at a replication fork pause site restores S-phase checkpoint signaling to chk1Δ dun1Δ cells and relieves the reliance on the DNA damage checkpoint pathway. Origin licensing and activation are controlled by the cyclin–Cdk complexes. Thus, oncogene-mediated deregulation of cyclins in the early stages of cancer development could contribute to genomic instability through a deficiency in the forks required to establish the S-phase checkpoint.
机译:当复制叉由于DNA损坏或脱氧核糖核苷酸三磷酸池低而停转时,复制叉处激活的S期检查点会协调DNA复制。我们探索复制叉在使用dun1Δ细胞协调S期检查点中的参与,这些dun1Δ细胞在早期起源的停滞叉数量上有缺陷,并且在复制停滞时依赖于DNA损伤Chk1p途径的存活。我们显示,提供在S早期激活的其他起源,并在复制叉停顿位点建立停顿的叉,可恢复chk1Δdun1Δ细胞的S期检查点信号,并减轻对DNA损伤检查点途径的依赖。来源许可和激活受细胞周期蛋白-Cdk复合物控制。因此,在癌发展的早期,癌基因介导的细胞周期蛋白失调可能通过建立S期检查点所需的分叉不足而导致基因组不稳定。

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