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酿酒酵母中的隐性无义抑制:对在非允许条件下积累于抑制菌株中的80S核糖体的研究。

Recessive nonsense-suppression in yeast Saccharomyces cerevisiae: the study of 80 S ribosomes accumulated in suppressor strain under non-permissive conditions.

作者信息

Surguchov A P, Fominykch E S, Berestetskaya Y V, Smirnov V N, Inge-Vechtomov S G

出版信息

Mol Gen Genet. 1980;177(4):675-80. doi: 10.1007/BF00272679.

Abstract

The shift of recessive suppressor mutant of yeast Saccharomyces cerevisiae from permissive to restrictive conditions is accompanied by polysome decay and accumulation of 80 S ribosomes (Smirnov et al., 1976). In this paper some properties of 80 S ribosomes are studied. It is demonstrated that polysome decay under non-permissive conditions is not the consequence of the impairment of RNA synthesis. More than 70% of 80 S ribosomes accumulated under non-permissive conditions contain bound peptidyl-tRNAs localized in P-ribosomal site. tRNA moiety of bound peptidyl-tRNA is able to accept all 20 natural amino acids after chemical deacylation. Therefore it is not a specific isoacceptor species but rather total tRNA that is bound to ribosomes. The polypeptide residues of these peptidyl-tRNAs are heterogeneous in size. Their molecular weights are comparable with the molecular weights of the completed polypeptides. Some of the 80 S ribosomes accumulated under non-permissive conditions contain poly-A+ RNA. In conclusion, possible mechanism of the impairment of translation under non-permissive conditions in recessive suppressor strain is discussed.

摘要

酿酒酵母隐性抑制突变体从允许条件转变为限制条件时,伴随着多核糖体的降解和80S核糖体的积累(斯米尔诺夫等人,1976年)。本文研究了80S核糖体的一些特性。结果表明,在非允许条件下多核糖体的降解并非RNA合成受损的结果。在非允许条件下积累的80S核糖体中超过70%含有定位在核糖体P位点的结合肽基-tRNA。结合肽基-tRNA的tRNA部分在化学脱酰基后能够接受所有20种天然氨基酸。因此,与核糖体结合的不是特定的同功受体种类,而是总的tRNA。这些肽基-tRNA的多肽残基大小各异。它们的分子量与完整多肽的分子量相当。在非允许条件下积累的一些80S核糖体含有多聚A+RNA。最后,讨论了隐性抑制菌株在非允许条件下翻译受损的可能机制。

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