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酿酒酵母RAD1切除修复基因破坏所引起的诱变效应的特异性。

Specificity of the mutator effect caused by disruption of the RAD1 excision repair gene of Saccharomyces cerevisiae.

作者信息

Kunz B A, Kohalmi L, Kang X L, Magnusson K A

机构信息

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

出版信息

J Bacteriol. 1990 Jun;172(6):3009-14. doi: 10.1128/jb.172.6.3009-3014.1990.

Abstract

Disruption of RAD1, a gene controlling excision repair in the yeast Saccharomyces cerevisiae, increased the frequency of spontaneous forward mutation in a plasmid-borne copy of the SUP4-o gene. To characterize this effect in detail, a collection of 249 SUP4-o mutations arising spontaneously in the rad1 strain was analyzed by DNA sequencing. The resulting mutational spectrum was compared with that derived from an examination of 322 spontaneous SUP4-o mutations selected in an isogenic wild-type (RAD1) strain. This comparison revealed that the rad1 mutator phenotype was associated with increases in the frequencies of single-base-pair substitution, single-base-pair deletion, and insertion of the yeast retrotransposon Ty. In the rad1 strain, the relative fractions of these events and their distributions within SUP4-o exhibited features similar to those for spontaneous mutagenesis in the isogenic RAD1 background. The increase in the frequency of Ty insertion argues that Ty transposition can be activated by unrepaired spontaneous DNA damage, which normally would be removed by excision repair. We discuss the possibilities that either translesion synthesis, a reduced fidelity of DNA replication, or a deficiency in mismatch correction might be responsible for the majority of single-base-pair events in the rad1 strain.

摘要

RAD1基因参与调控酿酒酵母中的切除修复过程,该基因功能的破坏会增加质粒携带的SUP4 - o基因自发正向突变的频率。为详细表征这一效应,对rad1菌株中自发产生的249个SUP4 - o突变进行了DNA测序分析。将所得的突变谱与在同基因野生型(RAD1)菌株中筛选出的322个自发SUP4 - o突变的检测结果进行了比较。该比较表明,rad1突变体表型与单碱基对替换、单碱基对缺失以及酵母逆转座子Ty插入频率的增加有关。在rad1菌株中,这些事件的相对比例及其在SUP4 - o内的分布呈现出与同基因RAD1背景下自发诱变相似的特征。Ty插入频率的增加表明,Ty转座可被未修复的自发DNA损伤激活,而这种损伤通常会通过切除修复被去除。我们讨论了跨损伤合成、DNA复制保真度降低或错配修复缺陷可能是rad1菌株中大多数单碱基对事件的原因的可能性。

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