Department of Microbiology, University of California Davis, Davis, California 95616, USA.
Nature. 2010 Apr 8;464(7290):937-41. doi: 10.1038/nature08868. Epub 2010 Mar 28.
Repair of DNA double-strand breaks (DSBs) by homologous recombination is crucial for cell proliferation and tumour suppression. However, despite its importance, the molecular intermediates of mitotic DSB repair remain undefined. The double Holliday junction (DHJ), presupposed to be the central intermediate for more than 25 years, has only been identified during meiotic recombination. Moreover, evidence has accumulated for alternative, DHJ-independent mechanisms, raising the possibility that DHJs are not formed during DSB repair in mitotically cycling cells. Here we identify intermediates of DSB repair by using a budding-yeast assay system designed to mimic physiological DSB repair. This system uses diploid cells and provides the possibility for allelic recombination either between sister chromatids or between homologues, as well as direct comparison with meiotic recombination at the same locus. In mitotically cycling cells, we detect inter-homologue joint molecule (JM) intermediates whose strand composition and size are identical to those of the canonical DHJ structures observed in meiosis. However, in contrast to meiosis, JMs between sister chromatids form in preference to those between homologues. Moreover, JMs seem to represent a minor pathway of DSB repair in mitotic cells, being detected at about tenfold lower levels (per DSB) than during meiotic recombination. Thus, although DHJs are identified as intermediates of DSB-promoted recombination in both mitotic and meiotic cells, their formation is distinctly regulated according to the specific dictates of the two cellular programs.
同源重组修复 DNA 双链断裂(DSBs)对于细胞增殖和肿瘤抑制至关重要。然而,尽管其重要性不言而喻,但有丝分裂 DSB 修复的分子中间产物仍未被定义。双 Holliday 连接(DHJ),被假定为超过 25 年的核心中间产物,仅在减数分裂重组期间被识别。此外,已经积累了替代的、DHJ 无关的机制的证据,这增加了 DHJs 在有丝分裂循环细胞的 DSB 修复过程中可能没有形成的可能性。在这里,我们通过使用一种拟态生理 DSB 修复的芽殖酵母测定系统来鉴定 DSB 修复的中间产物。该系统使用二倍体细胞,并提供了在姐妹染色单体之间或同源染色体之间进行等位基因重组的可能性,以及与同一基因座的减数分裂重组进行直接比较的可能性。在有丝分裂循环细胞中,我们检测到同源染色体间的连接分子(JM)中间产物,其链组成和大小与减数分裂中观察到的典型 DHJ 结构相同。然而,与减数分裂不同的是,姐妹染色单体之间的 JMs 优先形成,而不是同源染色体之间的 JMs。此外,JMs 似乎代表了有丝分裂细胞中 DSB 修复的次要途径,其检测水平(每个 DSB)比减数分裂重组低约 10 倍。因此,尽管 DHJs 被鉴定为有丝分裂和减数分裂细胞中 DSB 促进重组的中间产物,但它们的形成根据两种细胞程序的特定要求明显受到调节。
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