首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Analysis of spontaneous and double-strand break-induced recombination in rad mutants of S. pombe.
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Analysis of spontaneous and double-strand break-induced recombination in rad mutants of S. pombe.

机译:S. pombe rad突变体中自发和双链断裂诱导的重组分析。

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Schizosaccharomyces pombe strains containing direct repeats of adeo heteroalleles separated by a functional uro4+ gene, and a DNA site for induction of a double-strand break (DSB), have been used to analyze pathways of spontaneous and DSB-induced intrachromosomal mitotic recombination. These substrates yield Ade+ Ura+ convertants or Ade+ Ura- deletions, by the DSB/gap repair and single-strand annealing (SSA) pathways of recombination, respectively. In S. cerevisiae, the DSB/gap repair pathway is RAD52 dependent, and the RAD1 and RAD10 genes are involved in the SSA pathway. We have sought to understand the genetic control of the pathways of mitotic recombination in S. pombe by determining the effects of mutations in six rad genes involved in DNA repair: rad1 and rad3 involved in checkpoint control in response to unreplicated or damaged DNA; rad5 (homologue of S. cerevisiae RAD3) and rad10 (homologue of S. cerevisiae RAD1) involved in nucleotide excision repair; rad21 and rad22 (homologue of S. cerevisiae RAD52) involved in the repair of ionizing radiation-induced DNA damage. The results suggest that the genetic control of the pathways of spontaneous and DSB-induced mitotic intrachromosomal recombination in S. pombe is different from that in S. cerevisiae.
机译:裂殖酵母(Schizosaccharomyces pombe)菌株包含由功能性uro4 +基因分隔的adeo杂等位基因的直接重复序列,以及用于诱导双链断裂(DSB)的DNA位点,已用于分析自发和DSB诱导的染色体内有丝分裂重组的途径。这些底物分别通过DSB /缺口修复和重组的单链退火(SSA)途径产生Ade + Ura +转化子或Ade + Ura-缺失。在酿酒酵母中,DSB /间隙修复途径是RAD52依赖性的,并且RAD1和RAD10基因参与SSA途径。通过确定参与DNA修复的六个rad基因突变的影响,我们试图了解S. pombe有丝分裂重组途径的遗传控制:rad1和rad3参与检查点控制,以响应未复制或受损的DNA;参与核苷酸切除修复的rad5(酿酒酵母RAD3的同源物)和rad10(酿酒酵母RAD1的同源物); rad21和rad22(酿酒酵母RAD52的同源物)参与电离辐射诱导的DNA损伤的修复。结果表明,对粟酒裂殖酵母自发和DSB诱导的有丝分裂染色体内重组途径的遗传控制不同于酿酒酵母。

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