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核糖体蛋白S12在肽链延伸中的作用:对大肠杆菌多效性、抗链霉素突变体的分析

Role of ribosomal protein S12 in peptide chain elongation: analysis of pleiotropic, streptomycin-resistant mutants of Escherichia coli.

作者信息

Zengel J M, Young R, Dennis P P, Nomura M

出版信息

J Bacteriol. 1977 Mar;129(3):1320-9. doi: 10.1128/jb.129.3.1320-1329.1977.

Abstract

Some of the spontaneous streptomycin-resistant mutants of Escherichia coli strain C600 exhibit pleiotropic effects in addition to the antibiotic resistance. These effects include decreased growth rates, reduced levels of certain enzymes, and poor support of bacteriophage growth. One of these mutants, strain SM3, was studied further. We have examined the question of whether the reduced growth rate of the mutant SM3 is related to the reduction in relative amounts of ribosomes or to the reduction in the efficiency of ribosomes in protein synthesis. Measurements of alpha, the differential synthesis rate of ribosomal protein, revealed that the protein synthesis effeciency of ribosomes from the mutant strain SM3 was reduced about twofold relative to that of the parent strain C600. Measurements of the induction lag for beta-galactosidase and of the synthesis time of several different molecular-weight classes of proteins indicated that the mutation resulted in a marked reduction in the peptide chain growth rate. This reduction in the chain growth rate probably accounted for most of the observed reduction in the growth rate of the mutant strain. These experimental results show that the strA gene product, the S12 protein of the 30S subunit, is involved in some aspect of protein chain elongation. Presumably this involvement occurs during the messenger ribonucleic acid-directed binding of transfer ribonucleic acid to the ribosome.

摘要

大肠杆菌C600菌株的一些自发链霉素抗性突变体除了具有抗生素抗性外,还表现出多效性效应。这些效应包括生长速率降低、某些酶的水平降低以及对噬菌体生长的支持不佳。其中一个突变体,即SM3菌株,被进一步研究。我们研究了突变体SM3生长速率降低是与核糖体相对数量的减少有关,还是与核糖体在蛋白质合成中的效率降低有关。对核糖体蛋白差异合成速率α的测量表明,突变体菌株SM3核糖体的蛋白质合成效率相对于亲本菌株C600降低了约两倍。对β-半乳糖苷酶诱导延迟以及几种不同分子量类别的蛋白质合成时间的测量表明,该突变导致肽链生长速率显著降低。肽链生长速率的这种降低可能是观察到的突变体菌株生长速率降低的主要原因。这些实验结果表明,strA基因产物,即30S亚基的S12蛋白,在蛋白质链延伸的某些方面发挥作用。推测这种作用发生在信使核糖核酸指导的转移核糖核酸与核糖体的结合过程中。

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