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酿酒酵母中核苷酸切除修复和转录所需的一个基因(RAD3)发生突变,会提高错配修复的效率。

A mutation in a Saccharomyces cerevisiae gene (RAD3) required for nucleotide excision repair and transcription increases the efficiency of mismatch correction.

作者信息

Yang Y, Johnson A L, Johnston L H, Siede W, Friedberg E C, Ramachandran K, Kunz B A

机构信息

Department of Microbiology, University of Manitoba, Winnipeg, Canada.

出版信息

Genetics. 1996 Oct;144(2):459-66. doi: 10.1093/genetics/144.2.459.

Abstract

RAD3 functions in DNA repair and transcription in Saccharomyces cerevisiae and particular rad3 alleles confer a mutator phenotype, possibly as a consequence of defective mismatch correction. We assessed the potential involvement of the Rad3 protein in mismatch correction by comparing heteroduplex repair in isogenic rad3-1 and wild-type strains. The rad3-1 allele increased the spontaneous mutation rate but did not prevent heteroduplex repair or bias its directionality. Instead, the efficiency of mismatch correction was enhanced in the rad3-1 strain. This surprising result prompted us to examine expression of yeast mismatch repair genes. We determined that MSH2, but not MLH1, is transcriptionally regulated during the cell-cycle like PMS1, and that rad3-1 does not increase the transcript levels for these genes in log phase cells. These observations suggest that the rad3-1 mutation gives rise to an enhanced efficiency of mismatch correction via a process that does not involve transcriptional regulation of mismatch repair. Interestingly, mismatch repair also was more efficient when error-editing by yeast DNA polymerase delta was eliminated. We discuss our results in relation to possible mechanisms that may link the rad3-1 mutation to mismatch correction efficiency.

摘要

RAD3在酿酒酵母的DNA修复和转录过程中发挥作用,特定的rad3等位基因会导致突变体表型,这可能是错配修复缺陷的结果。我们通过比较同基因rad3-1菌株和野生型菌株中的异源双链修复,评估了Rad3蛋白在错配修复中的潜在作用。rad3-1等位基因增加了自发突变率,但并未阻止异源双链修复或影响其方向性。相反,rad3-1菌株中的错配修复效率得到了提高。这一惊人结果促使我们研究酵母错配修复基因的表达。我们确定,MSH2与PMS1一样在细胞周期中受到转录调控,而MLH1则不然,并且rad3-1不会增加对数期细胞中这些基因的转录水平。这些观察结果表明,rad3-1突变通过一个不涉及错配修复转录调控的过程,导致错配修复效率提高。有趣的是,当酵母DNA聚合酶δ的错误编辑被消除时,错配修复也更有效。我们结合可能将rad3-1突变与错配修复效率联系起来的机制讨论了我们的结果。

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