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酵母中一种突变的特征,该突变导致其几种 tRNA 产生突变的同工受体 tRNA:生理研究。

Characterization of a mutation in Saccharomyces cerevisiae that produces mutant isoaccepting tRNAs for several of its tRNA species : Physiological studies.

机构信息

Department of Genetics, The University of Alberta, T6G 2E9, Edmonton, Alberta, Canada.

出版信息

Curr Genet. 1981 Apr;3(1):73-82. doi: 10.1007/BF00419583.

Abstract

Genetic data presented in Bell et al. (1977) demonstrated that a mutation in Saccharomyces cerevisiae (designated mia) is responsible for the production of mutant isoaccepting tRNA molecules for some tRNA species. Besides extending this phenotype to other tRNAs, we have shown that mutant isoacceptors are produced at the expense of the normal levels of wild type tRNA and that the presence of mutant isoacceptors has no adverse effects on strains harbouring the mutation. The observation that mia strains have mutant isoacceptors as the predominant tRNA species under certain growth conditions suggests that mutant isoacceptors are biologically active molecules. Pulse-label and chase experiments indicate that mutant isoacceptors are slowly converted to wild type tRNA molecules in vivo, suggesting that they could be precursor molecules. This is consistent with the hypothesis that mia is defective in a modification process in the maturation of tRNA molecules. Analysis of a double mutant that produces mia isoacceptors which also lack N(2)-dimethylguanine shows that some of the modifications to tRNA molecules need not follow a specific sequence.

摘要

贝尔等人(1977 年)提供的遗传数据表明,酿酒酵母(命名为 mia)中的突变负责产生一些 tRNA 物种的突变同工受体 tRNA 分子。除了将这种表型扩展到其他 tRNA 之外,我们还表明,突变同工受体是在牺牲野生型 tRNA 的正常水平的情况下产生的,并且突变同工受体的存在对携带突变的菌株没有不利影响。mia 菌株在某些生长条件下具有突变同工受体作为主要 tRNA 物种的观察结果表明,突变同工受体是具有生物活性的分子。脉冲标记和追踪实验表明,突变同工受体在体内缓慢转化为野生型 tRNA 分子,这表明它们可能是前体分子。这与 mia 在 tRNA 分子成熟过程中的修饰过程中存在缺陷的假设是一致的。对产生 mia 同工受体的双突变体的分析表明,一些 tRNA 分子的修饰不需要遵循特定的顺序。

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