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Homologous recombination and nonhomologous end-joining repair pathways regulate fragile site stability

机译:同源重组和非同源末端修复途径调节脆弱的位点稳定性

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摘要

Common fragile sites are specific loci that form gaps and constrictions on metaphase chromosomes exposed to replication stress, which slows DNA replication. These sites have a role in chromosomal rearrangements in tumors; however, the molecular mechanism of their expression is unclear. Here we show that replication stress leads to focus formation of Rad51 and phosphorylated DNA-PKcs, key components of the homologous recombination (HR) and nonhomologous end-joining (NHEJ), double-strand break (DSB) repair pathways, respectively. Down-regulation of Rad51, DNA-PKcs, or Ligase IV, an additional component of the NHEJ repair pathway, leads to a significant increase in fragile site expression under replication stress. Replication stress also results in focus formation of the DSB markers, MDC1 and γH2AX. These foci colocalized with those of Rad51 and phospho-DNA-PKcs. Furthermore, γH2AX and phospho-DNA-PKcs foci were localized at expressed fragile sites on metaphase chromosomes. These findings suggest that DSBs are formed at common fragile sites as a result of replication perturbation. The repair of these breaks by both HR and NHEJ pathways is essential for chromosomal stability at these sites.
机译:常见的脆弱位点是特定位点,在暴露于复制压力的中期染色体上形成缺口和收缩,从而减慢了DNA复制。这些位点在肿瘤的染色体重排中起作用。然而,它们表达的分子机制尚不清楚。在这里,我们显示复制应力导致分别形成Rad51和磷酸化DNA-PKcs,同源重组(HR)和非同源末端连接(NHEJ),双链断裂(DSB)修复途径的关键成分的焦点形成。 Rad51,DNA-PKcs或Ligase IV(NHEJ修复途径的另一个组成部分)的下调导致复制压力下脆弱位点表达的显着增加。复制压力还导致DSB标记MDC1和γH2AX的焦点形成。这些病灶与Rad51和磷酸化DNA-PKcs的病灶共定位。此外,γH2AX和磷酸-DNA-PKcs焦点位于中期染色体上表达的脆弱位置。这些发现表明,由于复制扰动,在常见的易碎部位形成了DSB。通过HR和NHEJ途径修复这些断裂对于这些部位的染色体稳定性至关重要。

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