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Checkpoint responses to replication fork barriers

机译:检查点对复制分叉障碍的响应

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The fidelity of DNA replication is of paramount importance to the maintenance of genome integrity. When an active replication fork is perturbed, multiple cellular pathways are recruited to stabilize the replication apparatus and to help to bypass or correct the causative problem. However, if the problem is not corrected, the fork may collapse, exposing free DNA ends to potentially inappropriate processing. In prokary-otes, replication fork collapse promotes the activity of recombination proteins to restore a replication fork. Recent work has demonstrated that recombination is also intimately linked to replication in eukaryotic cells, and that recombination proteins are recruited to collapsed, but not stalled, replication forks. In this review we discuss the different types of potential replication fork barriers (RFB) and how these distinct RFBs can result in different DNA structures at the stalled replication fork. The DNA structure checkpoints which act within S phase respond to different RFBs in different ways and we thus discuss the processes that are controlled by the DNA replication checkpoints, paying particular attention to the function of the intra-S phase checkpoint that stabilises the stalled fork.
机译:DNA复制的保真度对于维持基因组完整性至关重要。当主动复制叉受到干扰时,会募集多个细胞途径来稳定复制设备并帮助绕过或纠正引起问题的方法。但是,如果问题未得到纠正,则货叉可能会塌陷,从而使游离DNA末端暴露于潜在的不适当处理中。在原核生物中,复制叉崩溃会促进重组蛋白的活性,从而恢复复制叉。最近的工作表明,重组也与真核细胞中的复制密切相关,重组蛋白被募集到折叠的而不是停滞的复制叉中。在这篇综述中,我们讨论了潜在复制叉屏障(RFB)的不同类型,以及这些不同的RFB如何在停滞的复制叉处导致不同的DNA结构。在S期中起作用的DNA结构检查点以不同的方式对不同的RFB作出反应,因此我们讨论了由DNA复制检查点控制的过程,尤其要注意S内阶段检查点的功能,该功能可稳定停滞的叉子。

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