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Structural Maintenance of Chromosomes (SMC) Proteins Promote Homolog-Independent Recombination Repair in Meiosis Crucial for Germ Cell Genomic Stability

机译:染色体(SMC)蛋白的结构维护促进减数分裂至关重要的生殖细胞基因组稳定性的同源独立重组修复。

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摘要

In meiosis, programmed DNA breaks repaired by homologous recombination (HR) can be processed into inter-homolog crossovers that promote the accurate segregation of chromosomes. In general, more programmed DNA double-strand breaks (DSBs) are formed than the number of inter-homolog crossovers, and the excess DSBs must be repaired to maintain genomic stability. Sister-chromatid (inter-sister) recombination is postulated to be important for the completion of meiotic DSB repair. However, this hypothesis is difficult to test because of limited experimental means to disrupt inter-sister and not inter-homolog HR in meiosis. We find that the conserved Structural Maintenance of Chromosomes (SMC) 5 and 6 proteins in Caenorhabditis elegans are required for the successful completion of meiotic homologous recombination repair, yet they appeared to be dispensable for accurate chromosome segregation in meiosis. Mutations in the smc-5 and smc-6 genes induced chromosome fragments and dismorphology. Chromosome fragments associated with HR defects have only been reported in mutants, which have disrupted inter-homolog crossover. Surprisingly, the smc-5 and smc-6 mutations did not disrupt the formation of chiasmata, the cytologically visible linkages between homologous chromosomes formed from meiotic inter-homolog crossovers. The mutant fragmentation defect appeared to be preferentially enhanced by the disruptions of inter-homolog recombination but not by the disruptions of inter-sister recombination. Based on these findings, we propose that the C. elegans SMC-5/6 proteins are required in meiosis for the processing of homolog-independent, presumably sister-chromatid-mediated, recombination repair. Together, these results demonstrate that the successful completion of homolog-independent recombination is crucial for germ cell genomic stability.
机译:在减数分裂中,可以将通过同源重组(HR)修复的程序化DNA断裂加工为同源基因间的交叉,从而促进染色体的精确分离。通常,形成的程序化DNA双链断裂(DSB)数量比同源物间交换的数量多,并且必须修复过量的DSB以维持基因组稳定性。姊妹染色单体(姐妹间)重组被认为对完成减数分裂DSB修复很重要。但是,该假设很难检验,因为在减数分裂中破坏姐妹间而不是同源同源HR的实验手段有限。我们发现,秀丽隐杆线虫的染色体(SMC)5和6蛋白的保守结构维持是成功完成减数分裂同源重组修复所必需的,但是它们似乎对于减数分裂中的准确染色体分离是必不可少的。 smc-5和smc-6基因的突变会诱导染色体片段和形态变化。仅在突变体中报告了与HR缺陷相关的染色体片段,该突变体破坏了同源物间的交换。出人意料的是,smc-5和smc-6突变并未破坏chiasmata的形成,chiasmata是由减数分裂同源同源物交叉形成的同源染色体之间的细胞学上可见的联系。突变体片段缺陷似乎通过同源间重组的破坏而被优先增强,而不是通过姐妹间重组的破坏而被增强。基于这些发现,我们建议减数分裂中的秀丽隐杆线虫SMC-5 / 6蛋白需要不依赖同源物的处理,大概是姐妹染色单体介导的重组修复。总之,这些结果表明,成功完成不依赖同源物的重组对于生殖细胞基因组稳定性至关重要。

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