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大肠杆菌链霉素依赖型突变体中转录、翻译速率与信使核糖核酸降解的偶联

Coupling of rates of transcription, translation, and messenger ribonucleic acid degradation in streptomycin-dependent mutants of Escherichia coli.

作者信息

Gupta R S, Schlessinger D

出版信息

J Bacteriol. 1976 Jan;125(1):84-93. doi: 10.1128/jb.125.1.84-93.1976.

Abstract

The growth rates of streptomycin-dependent mutants varied in proportion to the level of streptomycin supplied; growth also varied characteristically from one dependent strain to another at a given streptomycin concentration. When cells growing at different rates (over a threefold range) were treated with rifampin, direct proportionality was observed for three parameters: (i) the rates of shutoff of transcription of total ribonucleic acid (RNA) and ribosomal RNA, as measured by pulse labeling at later times; (ii) the translation time for molecules of beta-galactosidase; and (iii) the rate of chemical degradation of messenger RNA. In contrast, the rate of functional inactivation of both total and beta-galactosidase messenger RNA was about the same at all growth rates. None of the variations of growth or other parameters were observed in an otherwise isogenic streptomycin-resistant strain treated with streptomycin. Since the mutational change in strd mutants and the site of action of streptomycin are in the 30S ribosomal subunits, it is suggested that the rate of ribosome function is set by the dependent lesion (and the level of streptomycin). One possibility is that the other correlated effects are mechanistically "coupled" to ribosome function, but the apparent coupling could also be an indirect result of differential effects of streptomycin on variables such as ribosomal miscoding and nucleotide pool size. However, since the rate of functional inactivation of messenger RNA is constant even when the RNA is broken down two- to fourfold more slowly, translation yield tends to be proportional to the growth rate of the dependent strains.

摘要

链霉素依赖型突变体的生长速率与所提供的链霉素水平成比例变化;在给定的链霉素浓度下,不同依赖菌株的生长也有其独特的变化。当以不同速率(三倍范围)生长的细胞用利福平处理时,观察到三个参数呈直接比例关系:(i)总核糖核酸(RNA)和核糖体RNA转录的关闭速率,通过后期的脉冲标记测量;(ii)β-半乳糖苷酶分子的翻译时间;(iii)信使RNA的化学降解速率。相比之下,在所有生长速率下,总信使RNA和β-半乳糖苷酶信使RNA的功能失活速率大致相同。在用链霉素处理的其他方面同基因的链霉素抗性菌株中,未观察到生长或其他参数的变化。由于strd突变体中的突变变化和链霉素的作用位点在30S核糖体亚基中,因此表明核糖体功能的速率由依赖损伤(和链霉素水平)设定。一种可能性是其他相关效应在机制上与核糖体功能“耦合”,但明显的耦合也可能是链霉素对核糖体错编码和核苷酸库大小等变量的差异效应的间接结果。然而,由于即使信使RNA的分解速度慢两到四倍,其功能失活速率仍保持恒定,翻译产量往往与依赖菌株的生长速率成比例。

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