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严谨控制系统对大肠杆菌核糖体核糖核酸和核糖体蛋白基因转录的影响。

Influence of the stringent control system on the transcription of ribosomal ribonucleic acid and ribosomal protein genes in Escherichia coli.

作者信息

Dennis P P

出版信息

J Bacteriol. 1977 Feb;129(2):580-8. doi: 10.1128/jb.129.2.580-588.1977.

Abstract

The fraction of the total ribonucleic acid (RNA) synthesis rate that is messenger RNA (mRNA) for ribosomal protein (r-protein) and ribosomal RNA (rRNA) has been estimated in valS(Ts) rel+ stringent and valS(Ts) relA1 relaxed strains of Escherichia coli during a partial inhibition of valyl-transfer RNA aminoacylation. The partial inhibition was accomplished by shifting the strains from the permissive growth temperature of 29.5 degrees C to the semipermissive temperature of 35.5 degrees C. The RNA synthesized at the elevated temperature was pulse labeled with [3H]uracil. The fraction of the total incorpoarted 3H radioactivity in r-protein mRNA or in rRNA was estimated by specific hybridization to the transducing phages gammaspc1, which carries about 15 r-protein genes and lambdailv5, which carries an rRNA transcription unit. The results clearly demonstrate that the rel gene influences the fraction of the total RNA synthesis rate that is r protein mRNA and rRNA; in the rel+ strain they are significantly increased relative to control cultures. This indicates that the expression of the genes coding for the RNA and protein component of the ribosome are most likely regulated at the level of transcription. Furthermore, it appears that the distribution of functioning RNA polymerase between rRNA genes, r-protein genes, and other types of genes is influenced by the rel gene control system; presumably this influence is mediated through the unusual nucleotide guanosine tetraphosphate.

摘要

在对缬氨酰 - 转运RNA氨酰化进行部分抑制期间,已对大肠杆菌的valS(Ts) rel+ 严谨型菌株和valS(Ts) relA1 松弛型菌株中,作为核糖体蛋白(r - 蛋白)信使RNA(mRNA)和核糖体RNA(rRNA)的核糖核酸(RNA)合成速率的比例进行了估算。部分抑制是通过将菌株从允许生长温度29.5摄氏度转移到半允许温度35.5摄氏度来实现的。在升高温度下合成的RNA用[3H]尿嘧啶进行脉冲标记。通过与携带约15个r - 蛋白基因的转导噬菌体γspc1和携带rRNA转录单位的λilv5进行特异性杂交,估算r - 蛋白mRNA或rRNA中总掺入的3H放射性比例。结果清楚地表明,rel基因影响作为r - 蛋白mRNA和rRNA的总RNA合成速率的比例;在rel+ 菌株中,相对于对照培养物,它们显著增加。这表明编码核糖体RNA和蛋白质成分的基因的表达最有可能在转录水平受到调控。此外,似乎rRNA基因、r - 蛋白基因和其他类型基因之间功能性RNA聚合酶的分布受rel基因控制系统影响;据推测,这种影响是通过异常核苷酸鸟苷四磷酸介导的。

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