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Mitotic inter-homologue junctions accumulate at damaged DNA replication forks in recQ mutants.

机译:在recQ突变体中,有丝分裂同源性连接处积累在受损的DNA复制叉处。

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摘要

Mitotic homologous recombination is utilised to repair DNA breaks using either sister chromatids or homologous chromosomes as templates. Because sister chromatids are identical, exchanges between sister chromatids have no consequences for the maintenance of genomic integrity unless they involve repetitive DNA sequences. Conversely, homologous chromosomes might differ in genetic content, and exchanges between homologues might lead to loss of heterozygosity and subsequent inactivation of functional genes. Genomic instability, caused by unscheduled recombination events between homologous chromosomes, is enhanced in the absence of RecQ DNA helicases, as observed in Bloom's cancer-prone syndrome. Here, we used two-dimensional gel electrophoresis to analyse budding yeast diploid cells that were modified to distinguish replication intermediates originating from each homologous chromosome. Therefore, these cells were suitable for analysing the formation of inter-homologue junctions. We found that Rad51-dependent DNA structures resembling inter-homologue junctions accumulate together with sister chromatid junctions at damaged DNA replication forks in recQ mutants, but not in the absence of Srs2 or Mph1 DNA recombination helicases. Inter-homologue joint molecules in recQ mutants are less abundant than sister chromatid junctions, but they accumulate with similar kinetics after origin firing under conditions of DNA damage. We propose that unscheduled accumulation of inter-homologue junctions during DNA replication might account for allelic recombination defects in recQ mutants.
机译:利用姐妹染色单体或同源染色体作为模板,利用有丝分裂同源重组来修复DNA断裂。因为姐妹染色单体是相同的,所以除非它们涉及重复的DNA序列,否则姐妹染色单体之间的交换对维持基因组完整性没有任何影响。相反,同源染色体的遗传含量可能不同,并且同源物之间的交换可能导致杂合性丧失和随后的功能基因失活。如在Bloom的易患癌症综合症中所观察到的,在没有RecQ DNA解旋酶的情况下,由同源染色体之间非计划重组事件引起的基因组不稳定性会增强。在这里,我们使用了二维凝胶电泳来分析出芽的酵母二倍体细胞,这些细胞经修饰可以区分起源于每个同源染色体的复制中间体。因此,这些细胞适合分析同源间连接的形成。我们发现在recQ突变体中,类似于同源同源连接的Rad51依赖的DNA结构与姐妹染色单体连接一起积累在受损的DNA复制叉处,但在没有Srs2或Mph1 DNA重组解旋酶的情况下却不存在。 recQ突变体中的同源同源关节分子不如姐妹染色单体连接丰富,但在DNA损伤的条件下激发后,它们以相似的动力学积累。我们提出,DNA复制过程中同源连接之间的非计划性积累可能解释了recQ突变体中的等位基因重组缺陷。

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