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无误的RAD52途径和易出错的REV3途径决定了酿酒酵母中的自发诱变。

Error-free RAD52 pathway and error-prone REV3 pathway determines spontaneous mutagenesis in Saccharomyces cerevisiae.

作者信息

Endo Kingo, Tago Yu-ichiro, Daigaku Yasukazu, Yamamoto Kazuo

机构信息

Graduate School of life Sciences, Tohoku University, Sendai, Japan.

出版信息

Genes Genet Syst. 2007 Feb;82(1):35-42. doi: 10.1266/ggs.82.35.

Abstract

Using the CAN1 gene in haploid cells or heterozygous diploid cells, we characterized the effects of mutations in the RAD52 and REV3 genes of Saccharomyces cerevisiae in spontaneous mutagenesis. The mutation rate was 5-fold higher in the haploid rad52 strain and 2.5-fold lower in rev3 than in the wild-type strain. The rate in the rad52 rev3 strain was as low as in the wild-type strain, indicating the rad52 mutator phenotype to be dependent on REV3. Sequencing indicated that G:C-->T:A and G:C-->C:G transversions increased in the rad52 strain and decreased in the rev3 and rad52 rev3 strains, suggesting a role for REV3 in transversion mutagenesis. In diploid rev3 cells, frequencies of can1Delta::LEU2/can1Delta::LEU2 from CAN1/can1Delta::LEU2 due to recombination were increased over the wild-type level. Overall, in the absence of RAD52, REV3-dependent base-substitutions increased, while in the absence of REV3, RAD52-dependent recombination events increased. We further found that the rad52 mutant had an increased rate of chromosome loss and the rad52 rev3 double mutant had an enhanced chromosome loss mutator phenotype. Taken together, our study indicates that the error-free RAD52 pathway and error-prone REV3 pathway for rescuing replication fork arrest determine spontaneous mutagenesis, recombination, and genome instability.

摘要

利用单倍体细胞或杂合二倍体细胞中的CAN1基因,我们研究了酿酒酵母RAD52和REV3基因的突变在自发诱变中的作用。单倍体rad52菌株的突变率比野生型菌株高5倍,而rev3菌株的突变率比野生型菌株低2.5倍。rad52 rev3菌株的突变率与野生型菌株一样低,这表明rad52的诱变表型依赖于REV3。测序结果表明,在rad52菌株中,G:C→T:A和G:C→C:G颠换增加,而在rev3和rad52 rev3菌株中则减少,这表明REV3在颠换诱变中起作用。在二倍体rev3细胞中,由于重组导致的CAN1/can1Δ::LEU2中can1Δ::LEU2/can1Δ::LEU2的频率高于野生型水平。总体而言,在没有RAD52的情况下,依赖REV3的碱基替换增加,而在没有REV3的情况下,依赖RAD52的重组事件增加。我们进一步发现,rad52突变体的染色体丢失率增加,而rad52 rev3双突变体的染色体丢失诱变表型增强。综上所述,我们的研究表明,用于挽救复制叉停滞的无错RAD52途径和易错REV3途径决定了自发诱变、重组和基因组不稳定性。

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