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A novel allele of RAD52 that causes severe DNA repair and recombination deficiencies only in the absence of RAD51 or RAD59.

机译:RAD52的新等位基因仅在不存在RAD51或RAD59的情况下才导致严重的DNA修复和重组缺陷。

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摘要

With the use of an intrachromosomal inverted repeat as a recombination reporter, we have shown that mitotic recombination is dependent on the RAD52 gene, but reduced only fivefold by mutation of RAD51. RAD59, a component of the RAD51-independent pathway, was identified previously by screening for mutations that reduced inverted-repeat recombination in a rad51 strain. Here we describe a rad52 mutation, rad52R70K, that also reduced recombination synergistically in a rad51 background. The phenotype of the rad52R70K strain, which includes weak gamma-ray sensitivity, a fourfold reduction in the rate of inverted-repeat recombination, elevated allelic recombination, sporulation proficiency, and a reduction in the efficiency of mating-type switching and single-strand annealing, was similar to that observed for deletion of the RAD59 gene. However, rad52R70K rad59 double mutants showed synergistic defects in ionizing radiation resistance, sporulation, and mating-type switching. These results suggest that Rad52 and Rad59 have partially overlapping functions and that Rad59 can substitute for this function of Rad52 in a RAD51 rad52R70K strain.
机译:通过使用染色体内反向重复序列作为重组报告基因,我们证明了有丝分裂重组依赖于RAD52基因,但由于RAD51突变而仅减少了五倍。 RAD59是RAD51独立途径的组成部分,之前已通过筛选减少rad51菌株中反向重复重组的突变来鉴定。在这里,我们描述了一个rad52突变rad52R70K,它在rad51背景下也协同降低了重组。 rad52R70K菌株的表型,包括弱的伽马射线敏感性,反向重复重组速率降低四倍,等位基因重组升高,孢子形成能力以及交配型转换和单链退火效率降低与观察到的RAD59基因缺失相似。但是,rad52R70K rad59双突变体在电离辐射抗性,孢子形成和交配类型转换方面显示出协同缺陷。这些结果表明,Rad52和Rad59具有部分重叠的功能,并且Rad59可以替代RAD51 rad52R70K菌株中Rad52的此功能。

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