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大肠杆菌中核糖体合成的调控:能量源向下转换的分析

Control of ribosome synthesis in Escherichia coli: analysis of an energy source shift-down.

作者信息

Molin S, Von Meyenburg K, Maaloe O, Hansen M T, Pato M L

出版信息

J Bacteriol. 1977 Jul;131(1):7-17. doi: 10.1128/jb.131.1.7-17.1977.

Abstract

The rate of ribosome synthesis and accumulation in Escherichia coli during the transition after an energy source shift-down was analyzed. The shift was imposed on cultures of stringent and relaxed strains growing in glucose minimal medium by the addition of the glucose analogue alpha-methylglucoside. In the stringent strain, ribosome synthesis was almost instantaneously reduced after the shift, whereas the relaxed strain exhibited a more gradual response. The rate of messenger ribonucleic acid (mRNA) synthesis was affected similarly, though to a smaller extent. A comparison of the rates of synthesis and accumulation of ribosomal RNA (rRNA) and ribosomal proteins showed that far more ribosomal components were synthesized after the shift than were accumulated, indicating that a substantial part of the rRNA made after the shift was unstable. A new method was used to measure relative rates of rRNA synthesis and to estimate the transcription time for the rRNA operon under different conditions. In steady states of growth with growth rates ranging from 0.75 to 2.3 doublings/h, as well as during the transition after a shift-down, the transcription time of the rRNA operon was constant. The rate of synthesis of rRNA correlated during this transition - in contrast to the rate of accumulation (M. T. Hansen et al., J. Bacteriol. 122: 585-591, 1975) - with the ppGpp pool in the same way as has been observed during partial amino acid starvation.

摘要

分析了能量源下调后大肠杆菌在转变过程中核糖体的合成和积累速率。通过添加葡萄糖类似物α-甲基葡萄糖苷,对在葡萄糖基本培养基中生长的严谨型和松弛型菌株的培养物进行这种转变。在严谨型菌株中,转变后核糖体合成几乎立即减少,而松弛型菌株表现出更缓慢的反应。信使核糖核酸(mRNA)的合成速率受到类似影响,不过程度较小。核糖体RNA(rRNA)和核糖体蛋白的合成与积累速率的比较表明,转变后合成的核糖体组分远比积累的多,这表明转变后产生的大部分rRNA不稳定。使用一种新方法来测量rRNA的相对合成速率,并估计在不同条件下rRNA操纵子的转录时间。在生长速率为0.75至2.3次加倍/小时的稳定生长状态下,以及在下调后的转变过程中,rRNA操纵子的转录时间是恒定的。与积累速率(M. T. 汉森等人,《细菌学杂志》122: 585 - 591, 1975)相反,在这个转变过程中,rRNA的合成速率与ppGpp库的相关性,与在部分氨基酸饥饿期间观察到的情况相同。

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