SRS2基因的缺失抑制了酿酒酵母rad5和rad18突变体重组和DNA损伤敏感性的升高

Anna A Friedl , Batia Liefshitz , Rivka Steinlauf , Martin Kupiec
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引用次数: 65

摘要

酿酒酵母基因RAD5、RAD18和SRS2被认为在DNA复制后修复中起作用。我们研究了紫外和γ射线处理对数细胞和早期静止细胞后,这些基因突变与细胞存活和异位基因转换之间的遗传相互作用。我们发现rad5和rad18突变之间的遗传相互作用取决于治疗时DNA损伤类型和细胞周期中的位置。SRS2失活抑制rad5和rad18突变体的损伤敏感性,但仅在对数期处理时有效。在固定期辐照时,srs2突变增强了rad5突变体的敏感性,而对rad18突变体没有影响。无论生长阶段如何,srs2突变降低了rad5和rad18突变体中损伤诱导的异位基因转换的频率。此外,我们发现srs2突变体表现出自发和紫外线诱导的姐妹染色单体重组(SCR)减少,而rad5和rad18突变体则精通SCR。我们提出了一个模型,其中Srs2蛋白具有促重组或抗重组活性,这取决于DNA损伤的背景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deletion of the SRS2 gene suppresses elevated recombination and DNA damage sensitivity in rad5 and rad18 mutants of Saccharomyces cerevisiae

The Saccharomyces cerevisiae genes RAD5, RAD18, and SRS2 are proposed to act in post-replicational repair of DNA damage. We have investigated the genetic interactions between mutations in these genes with respect to cell survival and ectopic gene conversion following treatment of logarithmic and early stationary cells with UV- and γ-rays. We find that the genetic interaction between the rad5 and rad18 mutations depends on DNA damage type and position in the cell cycle at the time of treatment. Inactivation of SRS2 suppresses damage sensitivity both in rad5 and rad18 mutants, but only when treated in logarithmic phase. When irradiated in stationary phase, the srs2 mutation enhances the sensitivity of rad5 mutants, whereas it has no effect on rad18 mutants. Irrespective of the growth phase, the srs2 mutation reduces the frequency of damage-induced ectopic gene conversion in rad5 and rad18 mutants. In addition, we find that srs2 mutants exhibit reduced spontaneous and UV-induced sister chromatid recombination (SCR), whereas rad5 and rad18 mutants are proficient for SCR. We propose a model in which the Srs2 protein has pro-recombinogenic or anti-recombinogenic activity, depending on the context of the DNA damage.

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