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The nucleolytic resolution of recombination intermediates in yeast mitotic cells

机译:酵母有丝分裂细胞中重组中间体的核酸分解

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In mitotic cells, the repair of double-strand breaks by homologous recombination (HR) is important for genome integrity. HR requires the orchestration of a subset of pathways for timely removal of joint-molecule intermediates that would otherwise prevent segregation of chromosomes in mitosis. The use of nucleases to resolve recombination intermediates is important for chromosome segregation, but is hazardous because crossovers can result in loss of heterozygosity or chromosome rearrangements. Unregulated use of the nucleases involved in the resolution of recombination intermediates could also be a risk during replication. The yeast models (Saccharomyces cerevisae and Schizosaccharomyces pombe) have proven effective in determining the major nucleases involved in the processing of such intermediates: Mus81-Mms4 and Yen1. Mus81-Mms4 and Yen1 are regulated by the cell cycle in a gradual activation during G2/M to keep the crossing-over risk low while ensuring proper removal of HJ intermediates.The yeast model served to dissect the roles of different nucleases in the resolution of recombination intermediates to ensure genetic stability after a DNA double-strand break.The yeast model served to dissect the roles of different nucleases in the resolution of recombination intermediates to ensure genetic stability after a DNA double-strand break.
机译:在有丝分裂细胞中,通过同源重组(HR)修复双链断裂对于基因组完整性至关重要。 HR需要协调一部分途径,以及时清除关节分子中间体,否则将阻止有丝分裂中染色体的分离。使用核酸酶来解决重组中间体对于染色体分离很重要,但是很危险,因为交换会导致杂合性丧失或染色体重排。复制过程中涉及重组核酸拆分的核酸酶的无规使用也可能是一个风险。酵母模型(酿酒酵母和裂殖酵母)已被证明可以有效地确定涉及此类中间产物加工的主要核酸酶:Mus81-Mms4和Yen1。在G2 / M期间,Mus81-Mms4和Yen1受细胞周期的调节而逐渐激活,以保持较低的穿越风险,同时确保正确除去HJ中间体。酵母模型有助于剖析不同核酸酶在分离HJ分子中的作用。重组中间体可确保DNA双链断裂后的遗传稳定性。酵母模型用于剖析不同核酸酶在重组中间体解析中的作用,以确保DNA双链断裂后的遗传稳定性。

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