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对无机汞敏感的酿酒酵母菌株。I. 酪氨酸的作用。

Saccharomyces cerevisiae strains sensitive to inorganic mercury. I. Effect of tyrosine.

作者信息

Ono B, Sakamoto E

机构信息

Laboratory of Environmental Hygiene Chemistry, Faculty of Pharmaceutical Sciences, Okayama University, Japan.

出版信息

Curr Genet. 1985;10(3):179-85. doi: 10.1007/BF00798747.

Abstract

From a cross of two strains of Saccharomyces cerevisiae, both of which had the same (wild type or normal) level of resistance to inorganic mercury, segregants having three distinguishable resistance levels, normal, sensitive and semi-sensitive, were obtained. Genetic analyses of the parents and the progeny indicated that the levels of inorganic mercury sensitivity were determined by three distinct loci, HGS1, HGS2 and MSM1. The recessive allele of the HGS1 locus, hgs1-1, and the codominant allele of the HGS2 locus, HGS2-1, were necessary for the sensitive phenotypes, and alleles in the MSM1 locus, MSM1-1 and msm1-2, were responsible for the different sensitivity levels. In short, the strains of genotypes hgs1-1 HGS2-1 msm1-2 and hgs1-1 HGS2-1 MSM1-1 were sensitive and semi-sensitive, respectively, while the strains of all other genotypes were normal. Although the hgs1-1 allele was identified as the aro7-1 mutation which confers deficiency of tyrosine and phenylalanine, mutations such as aro1B (deficiency of tyrosine, phenylalanine and tryptophan) and tyr1 (deficiency of tyrosine) had similar effects as aro7-1 on inorganic mercury sensitivity. From these results we conclude that the HGS2-1 allele causes inorganic mercury sensitivity when the cells are defective in the tyrosine biosynthesis. In fact, addition of tyrosine to the growth medium containing inorganic mercury resulted in increase of colony forming ability of the sensitive strains.

摘要

从两株酿酒酵母的杂交后代中,这两株对无机汞均具有相同(野生型或正常)水平的抗性,获得了具有三种可区分抗性水平的分离子,即正常、敏感和半敏感。对亲本和子代的遗传分析表明,无机汞敏感性水平由三个不同的基因座HGS1、HGS2和MSM1决定。HGS1基因座的隐性等位基因hgs1 - 1和HGS2基因座的共显性等位基因HGS2 - 1是敏感表型所必需的,而MSM1基因座中的等位基因MSM1 - 1和msm1 - 2则决定了不同的敏感性水平。简而言之,基因型为hgs1 - 1 HGS2 - 1 msm1 - 2和hgs1 - 1 HGS2 - 1 MSM1 - 1的菌株分别为敏感型和半敏感型,而所有其他基因型的菌株均为正常型。尽管hgs1 - 1等位基因被鉴定为aro7 - 1突变,该突变导致酪氨酸和苯丙氨酸缺乏,但aro1B(酪氨酸、苯丙氨酸和色氨酸缺乏)和tyr1(酪氨酸缺乏)等突变对无机汞敏感性具有与aro7 - 1类似的影响。从这些结果我们得出结论,当细胞在酪氨酸生物合成中存在缺陷时,HGS2 - 1等位基因会导致无机汞敏感性。事实上,在含有无机汞的生长培养基中添加酪氨酸会导致敏感菌株的集落形成能力增加。

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