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酿酒酵母原始pso3突变体中谷胱甘肽池含量低是其多效性敏感表型的原因。

Low glutathione pools in the original pso3 mutant of Saccharomyces cerevisiae are responsible for its pleiotropic sensitivity phenotype.

作者信息

Brendel M, Grey M, Maris A F, Hietkamp J, Fesus Z, Pich C T, Dafré A L, Schmidt M, Eckardt-Schupp F, Henriques J A

机构信息

Biologie für Mediziner, Institut für Mikrobiologie der J. W. Goethe-Universität, Theodor-Stern-Kai 7, Haus 75, D-60590 Frankfurt/Main, Germany.

出版信息

Curr Genet. 1998 Jan;33(1):4-9. doi: 10.1007/s002940050301.

Abstract

The original pso3-1 mutant isolate of the yeast Saccharomyces cerevisiae exhibits a pleiotropic mutagen-sensitivity phenotype that includes sensitivity to UVA-activated 3-carbethoxypsoralen, to UVC-light, to mono- and bi-functional nitrogen mustard, to paraquat, and to cadmium; on the other hand, it shows hyper-resistance (HYR) to nitrosoguanidine when compared to established wild-type strains. Also, the original pso3-1 mutant exhibits a low UVC-induced mutability and mitotic gene conversion and a high rate of spontaneous and UVC-induced petite mutations. Since the HYR to the nitrosoguanidine (MNNG) phenotype resembles that of low glutathione-containing yeast cells, the original pso3-1 mutant was crossed to a gsh1 knock-out mutant that lacks the enzyme for the first step in glutathione biosynthesis and the resulting diploid was tested for complementation. While there was none for HYR to nitrosoguanidine, and other low glutathione-related phenotypes, some other phenotypic characteristics of pso3-1, e.g. UVC sensitivity and UVC-induced mutability were restored to a wild-type level. Tetrad analysis of a diploid derived from a cross of the original haploid pso3-1 isolate with a repair-proficient, normal glutathione-containing, PSO3 GSH1 wild-type led to the separation of a leaky gsh1 mutation phenotype from that of the repair-deficient pso3-1 phenotype. Linkage studies by tetrad and random spore analyses indicated no linkage of the two genes. This shows that the low glutathione content in the original pso3-1 isolate is due to a second, additional, mutation in the GSH1 locus and is unrelated to the pso3-1 mutation. Thus, the original pso3-1 isolate is a pso3-1 gsh1 double mutant with most of the particular characteristics of the pleiotropic sensitivity phenotype contributed by either the pso3-1 or the gsh1-leaky mutant allele. The expression of a few phenotypic characteristics of pso3, however, were most pronounced in pso3-1 mutants with a low glutathione pool.

摘要

酿酒酵母的原始pso3 - 1突变体分离株表现出多效性诱变剂敏感性表型,包括对紫外线A激活的3 - 乙氧羰基补骨脂素、紫外线C光、单功能和双功能氮芥、百草枯和镉敏感;另一方面,与已建立的野生型菌株相比,它对亚硝基胍表现出高抗性(HYR)。此外,原始的pso3 - 1突变体表现出低的紫外线C诱导的突变性和有丝分裂基因转换,以及高频率的自发和紫外线C诱导的小菌落突变。由于对亚硝基胍(MNNG)的高抗性表型类似于含低谷胱甘肽的酵母细胞的表型,原始的pso3 - 1突变体与gsh1敲除突变体杂交,该突变体缺乏谷胱甘肽生物合成第一步所需的酶,并对所得二倍体进行互补测试。虽然对亚硝基胍的高抗性以及其他与低谷胱甘肽相关的表型没有互补,但pso3 - 1的一些其他表型特征,如紫外线C敏感性和紫外线C诱导的突变性恢复到了野生型水平。对原始单倍体pso3 - 1分离株与具有修复能力、含正常谷胱甘肽的PSO3 GSH1野生型杂交产生的二倍体进行四分体分析,导致渗漏的gsh1突变表型与修复缺陷的pso3 - 1表型分离。通过四分体和随机孢子分析进行的连锁研究表明这两个基因没有连锁。这表明原始pso3 - 1分离株中的低谷胱甘肽含量是由于GSH1基因座中的第二个额外突变,与pso3 - 1突变无关。因此,原始的pso3 - 1分离株是一个pso3 - 1 gsh1双突变体,多效性敏感表型的大多数特定特征由pso3 - 1或gsh1渗漏突变等位基因贡献。然而,pso3的一些表型特征的表达在谷胱甘肽池低的pso3 - 1突变体中最为明显。

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