首页> 外文期刊>Nucleic Acids Research >Hierarchy of nonhomologous end-joining, single-strand annealing and gene conversion at site-directed DNA double-strand breaks.
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Hierarchy of nonhomologous end-joining, single-strand annealing and gene conversion at site-directed DNA double-strand breaks.

机译:非同源末端连接,单链退火和定点DNA双链断裂处的基因转化的层次结构。

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摘要

In mammalian cells, DNA double-strand breaks (DSBs) are repaired by three pathways, nonhomologous end-joining (NHEJ), gene conversion (GC) and single-strand annealing (SSA). These pathways are distinct with regard to repair efficiency and mutagenic potential and must be tightly controlled to preserve viability and genomic stability. Here, we employed chromosomal reporter constructs to characterize the hierarchy of NHEJ, GC and SSA at a single I-SceI-induced DSB in Chinese hamster ovary cells. We discovered that the use of GC and SSA was increased by 6- to 8-fold upon loss of Ku80 function, suggesting that NHEJ is dominant over the other two pathways. However, NHEJ efficiency was not altered if GC was impaired by Rad51 knockdown. Interestingly, when SSA was made available as an alternative mode for DSB repair, loss of Rad51 function led to an increase in SSA activity at the expense of NHEJ, implying that Rad51 may indirectly promote NHEJ by limiting SSA. We conclude that a repair hierarchy exists to limit the access of the most mutagenic mechanism, SSA, to the break site. Furthermore, the cellular choice of repair pathways is reversible and can be influenced at the level of effector proteins such as Ku80 or Rad51.
机译:在哺乳动物细胞中,DNA双链断裂(DSB)通过三种途径修复:非同源末端连接(NHEJ),基因转化(GC)和单链退火(SSA)。这些途径在修复效率和诱变潜力方面是截然不同的,必须严格控制以保持活力和基因组稳定性。在这里,我们使用染色体报告基因构建体来表征中国仓鼠卵巢细胞中单个I-SceI诱导的DSB的NHEJ,GC和SSA的层次结构。我们发现,随着Ku80功能的丧失,GC和SSA的使用增加了6到8倍,这表明NHEJ在其他两个途径中占主导地位。但是,如果Rad51敲低会损害GC,则NHEJ效率不会改变。有趣的是,当将SSA用作DSB修复的替代模式时,Rad51功能的丧失导致SSA活性增加,但以NHEJ为代价,这暗示Rad51可通过限制SSA间接促进NHEJ。我们得出的结论是,存在一个修复层次结构来限制对突变位点最具致突变性的机制SSA的访问。此外,修复途径的细胞选择是可逆的,并且可以在效应蛋白如Ku80或Rad51的水平上受到影响。

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