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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Saccharomyces cerevisiae rad51 Mutants Are Defective in DNA Damage-Associated Sister Chromatid Exchanges but Exhibit Increased Rates of Homology-Directed Translocations
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Saccharomyces cerevisiae rad51 Mutants Are Defective in DNA Damage-Associated Sister Chromatid Exchanges but Exhibit Increased Rates of Homology-Directed Translocations

机译:酿酒酵母rad51突变体在DNA损伤相关的姐妹染色单体交换中有缺陷,但表现出同源性易位的增加率

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Saccharomyces cerevisiae Rad51 is structurally similar to Escherichia coli RecA. We investigated the role of S. cerevisiae RAD51 in DNA damage-associated unequal sister chromatid exchanges (SCEs), translocations, and inversions. The frequency of these rearrangements was measured by monitoring mitotic recombination between two his3 fragments, his3- Δ 5 ′ and his3- Δ 3 ′ ::HOcs , when positioned on different chromosomes or in tandem and oriented in direct or inverted orientation. Recombination was measured after cells were exposed to chemical agents and radiation and after HO endonuclease digestion at his3- Δ 3 ′ ::HOcs . Wild-type and rad51 mutant strains showed no difference in the rate of spontaneous SCEs; however, the rate of spontaneous inversions was decreased threefold in the rad51 mutant. The rad51 null mutant was defective in DNA damage-associated SCE when cells were exposed to either radiation or chemical DNA-damaging agents or when HO endonuclease-induced double-strand breaks (DSBs) were directly targeted at his3 -Δ 3 ′ ::HOcs . The defect in DNA damage-associated SCEs in rad51 mutants correlated with an eightfold higher spontaneous level of directed translocations in diploid strains and with a higher level of radiation-associated translocations. We suggest that S. cerevisiae RAD51 facilitates genomic stability by reducing nonreciprocal translocations generated by RAD51 -independent break-induced replication (BIR) mechanisms.
机译:啤酒酵母Rad51在结构上与大肠杆菌RecA类似。我们调查了酿酒酵母RAD51在DNA损伤相关的不平等姐妹染色单体交换(SCE),易位和倒位中的作用。这些重排的频率通过监测两个his3片段(his3-Δ5'和his3-Δ3':: HOcs)之间的有丝分裂重组来测量,当它们位于不同的染色体上或串联在一起并以直接或反向取向时。在细胞暴露于化学试剂和辐射后以及在his3-Δ3':: HOcs处HO核酸内切酶消化后,测量重组。野生型和rad51突变菌株自发SCE的速率没有差异。但是,rad51突变体的自发转化率降低了三倍。当细胞暴露于辐射或化学DNA损伤剂或直接将HO核酸内切酶诱导的双链断裂(DSB)靶向his3-Δ3':: HOcs时,rad51空突变体在DNA损伤相关SCE中存在缺陷。 。 rad51突变体中与DNA损伤相关的SCE中的缺陷与二倍体菌株中定向易位的自发水平高八倍,并且与辐射相关的易位也较高。我们建议酿酒酵母RAD51通过减少由RAD51独立的断裂诱导复制(BIR)机制生成的不可逆转位促进基因组稳定性。

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