首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >The yeast RAD2, but not RAD1, gene is involved in the transcription-coupled repair of thymine glycols.
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The yeast RAD2, but not RAD1, gene is involved in the transcription-coupled repair of thymine glycols.

机译:酵母RAD2基因而不是RAD1基因参与胸腺嘧啶二醇的转录偶联修复。

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Transcription-coupled repair of H2O2-induced thymine glycols and UV-induced pyrimidine dimers has been shown to occur in the yeast Saccharomyces cerevisiae. In order to determine whether the preferential repair of thymine glycols is carried out by the same nucleotide excision repair complex that removes pyrimidine dimers, we examined the repair of thymine glycols in two yeast mutants, rad1 delta and rad2 delta, in which the nucleotide excision repair pathway was disrupted. We find that in both wild-type and a rad1 delta mutant, repair of thymine glycols occurs faster on the transcribed strand of the GAL7 gene than on the nontranscribed strand. This indicates that transcription-coupled repair can occur in the absence of nucleotide excision repair and that repair of oxidative DNA damage initiated by an N-glycosylase can be coupled to transcription. In contrast, the initial rate of repair of thymine glycols on the transcribed strand of the GAL7 gene in a rad2 delta mutant is significantly slower than thatfor the wild-type cells, with kinetics similar to that of the nontranscribed strand. However, by 60 min post-treatment, the amount of repair on the transcribed strand in the rad2 delta eventually reaches that of the wild-type cells. We conclude that repair of oxidative DNA damage, such as thymine glycols, can be coupled to transcription and that RAD2 facilitates transcription-coupled repair of oxidative DNA damage in yeast.
机译:H2O2诱导的胸腺嘧啶二醇和UV诱导的嘧啶二聚体的转录偶联修复已显示在酵母酿酒酵母中。为了确定是否通过去除嘧啶二聚体的相同核苷酸切除修复复合物进行胸腺嘧啶二醇的优先修复,我们检查了两个酵母突变体rad1 delta和rad2 delta中胸腺嘧啶二醇的修复,其中核苷酸切除修复通路被打断。我们发现在野生型和rad1 delta突变体中,胸腺嘧啶二醇的修复在GAL7基因的转录链上比在非转录链上的发生更快。这表明在没有核苷酸切除修复的情况下可以发生转录偶联修复,并且可以将由N-糖基化酶引发的氧化DNA损伤的修复与转录偶联。相比之下,在rad2 delta突变体中,在GAL7基因转录链上的胸腺嘧啶二醇的修复初始速率明显慢于野生型细胞,其动力学与未转录链相似。但是,在处理后60分钟,rad2三角洲中转录链的修复量最终达到了野生型细胞的修复量。我们得出结论,氧化性DNA损伤(如胸腺嘧啶二醇)的修复可以与转录偶联,而RAD2促进酵母中氧化性DNA损伤的转录偶联修复。

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