首页> 外文期刊>Nucleic Acids Research >Single-stranded DNA oligomers stimulate error-prone alternative repair of DNA double-strand breaks through hijacking Ku protein
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Single-stranded DNA oligomers stimulate error-prone alternative repair of DNA double-strand breaks through hijacking Ku protein

机译:单链DNA低聚物通过劫持Ku蛋白刺激容易出错的DNA双链断裂的替代修复

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摘要

In humans, DNA double-strand breaks (DSBs) are repaired by two mutually-exclusive mechanisms, homologous recombination or end-joining. Among end-joining mechanisms, the main process is classical non-homologous end-joining (C-NHEJ) which relies on Ku binding to DNA ends and DNA Ligase IV (Lig4)-mediated ligation. Mostly under Ku- or Lig4-defective conditions, an alternative end-joining process (A-EJ) can operate and exhibits a trend toward microhomology usage at the break junction. Homologous recombination relies on an initial MRN-dependent nucleolytic degradation of one strand at DNA ends. This process, named DNA resection generates 3' single-stranded tails necessary for homologous pairing with the sister chromatid. While it is believed from the current literature that the balance between joining and recombination processes at DSBs ends is mainly dependent on the initiation of resection, it has also been shown that MRN activity can generate short single-stranded DNA oligonucleotides (ssO) that may also be implicated in repair regulation. Here, we evaluate the effect of ssO on end-joining at DSB sites both in vitro and in cells. We report that under both conditions, ssO inhibit C-NHEJ through binding to Ku and favor repair by the Lig4-independent microhomology-mediated A-EJ process.
机译:在人类中,DNA双链断裂(DSB)通过两种相互排斥的机制进行修复,即同源重组或末端连接。在末端连接机制中,主要过程是经典的非同源末端连接(C-NHEJ),其依赖于Ku与DNA末端的结合和DNA Ligase IV(Lig4)介导的连接。大多数情况下,在Ku-或Lig4缺陷条件下,可以使用另一种末端连接工艺(A-EJ),并且在断开连接处表现出使用微观同源性的趋势。同源重组依赖于DNA末端一条链的初始MRN依赖性核降解。这个被称为DNA切除的过程产生了与姐妹染色单体同源配对所必需的3'单链尾巴。虽然从当前文献中可以确信,DSBs末端的连接和重组过程之间的平衡主要取决于切除的开始,但也显示出MRN活性可以产生短的单链DNA寡核苷酸(ssO),这也可能与维修规定有关。在这里,我们评估ssO对体外和细胞中DSB位点末端连接的影响。我们报告说,在两种情况下,ssO都通过与Ku结合而抑制C-NHEJ,并倾向于通过独立于Lig4的微同源介导的A-EJ过程进行修复。

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