首页> 外文期刊>Nucleic Acids Research >PCNA promotes processive DNA end resection by Exo1
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PCNA promotes processive DNA end resection by Exo1

机译:PCNA通过Exo1促进进行性DNA末端切除

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摘要

Exo1-mediated resection of DNA double-strand break ends generates 3' single-stranded DNA overhangs required for homology-based DNA repair and activation of the ATR-dependent checkpoint. Despite its critical importance in inducing the overall DNA damage response, the mechanisms and regulation of the Exo1 resection pathway remain incompletely understood. Here, we identify the ring-shaped DNA clamp PCNA as a new factor in the Exo1 resection pathway. Using mammalian cells, Xenopus nuclear extracts and purified proteins, we show that after DNA damage, PCNA loads onto double-strand breaks and promotes Exo1 damage association through direct interaction with Exo1. By tethering Exo1 to the DNA substrate, PCNA confers processivity to Exo1 in resection. This role of PCNA in DNA resection is analogous to its function in DNA replication where PCNA serves as a processivity co-factor for DNA polymerases.
机译:Exo1介导的DNA双链断裂末端切除产生3'单链DNA突出端,这是基于同源性的DNA修复和ATR依赖检查点激活所必需的。尽管在诱导总体DNA损伤反应中起着至关重要的作用,但对Exo1切除途径的机制和调控仍未完全了解。在这里,我们确定环状DNA钳PCNA作为Exo1切除途径中的新因素。使用哺乳动物细胞,非洲爪蟾核提取物和纯化的蛋白质,我们表明DNA损伤后,PCNA加载到双链断裂上,并通过与Exo1的直接相互作用促进Exo1损伤的关联。通过将Exo1束缚在DNA底物上,PCNA在切除中赋予Exo1持续性。 PCNA在DNA切除中的作用类似于其在DNA复制中的功能,其中PCNA充当DNA聚合酶的持续合成因子。

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