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酿酒酵母中隐品碱抗性的遗传学与生物化学

Genetics and biochemistry of cryptopleurine resistance in the yeast Saccharomyces cerevisiae.

作者信息

Sánchez L, Vásquez D, Jiménez A

出版信息

Mol Gen Genet. 1977 Nov 18;156(3):319-26. doi: 10.1007/BF00267188.

Abstract

Protein synthesis by ribosomes from several cryptopleurine-resistant yeast mutants is also resistant to emetine and tubulosine. These mutants can be classified into two different types: Class I mutants which display high levels of resistance to emetine and tubulosine and Class II mutants that are only weakly resistant to tubulosine and are slightly more sensitive to emetine than those of Class I. Apparently all mutants have similar levels of resistance to cryptopleurine. The distinct phenotypes of Class I and Class II strains are expressed through their 40S ribosomal subunit. Genetic analysis has shown that the mutations to cryptopleuring resistance are allelic and that in a particular case (strain CRY6) the pleiotropic phenotype is a result of the expression of the cry1 locus. It is suggested that Class I and Class II mutants arise from two independent mutational events within The cry1 allel. In heterozygous (+/cry1) diploids both the sensitive and the resistant genes are expressed as shown by studies of the action of cryptopleurine on polyphenylalanine-synthesizing systems derived from each parental sensitive and resistant haploid strain and heterozygous diploid strains. The apparent dominance of sensitivity over resistance which may be observed in vivo in heterozygous (+/cry1) diploids has been explained in terms of the mode of action of the inhibitors.

摘要

几种抗隐品碱酵母突变体的核糖体进行的蛋白质合成也对依米丁和微管碱具有抗性。这些突变体可分为两种不同类型:I类突变体对依米丁和微管碱表现出高水平抗性,II类突变体仅对微管碱有弱抗性,且对依米丁的敏感性略高于I类突变体。显然,所有突变体对隐品碱的抗性水平相似。I类和II类菌株的不同表型通过其40S核糖体亚基表现出来。遗传分析表明,抗隐品碱的突变是等位基因,在一个特定案例(CRY6菌株)中,多效表型是cry1基因座表达的结果。有人提出,I类和II类突变体源于cry1等位基因内的两个独立突变事件。在杂合(+/cry1)二倍体中,敏感基因和抗性基因都有表达,这是通过研究隐品碱对来自每个亲本敏感和抗性单倍体菌株以及杂合二倍体菌株的聚苯丙氨酸合成系统的作用得出的。在杂合(+/cry1)二倍体中体内可能观察到的敏感性对抗性的明显显性,已根据抑制剂的作用方式进行了解释。

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