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The control of ribonucleic acid synthesis in bacteria. Fluctuations in messenger ribonucleic acid synthesis in cultures recovering from amino acid starvation

机译:细菌中核糖核酸合成的控制。从氨基酸饥饿状态恢复的培养物中信使核糖核酸合成的波动

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摘要

Changes in the cell content and rate of synthesis of mRNA were studied in auxotrophs of Escherichia coli recovering from a period of amino acid deprivation. Parallel studies were carried out on bacterial strains inhibited with trimethoprim, when glycine and methionine were added to relieve an amino acid deficiency. In the latter case, protein synthesis was still severely inhibited through a lack of N-formylmethionyl-tRNAfMet for chain initiation, so that fewer ribosomes were attached to mRNA chains. (1) In RCstr strains recovering from amino acid starvation, there was a transient oversynthesis of mRNA, but the amounts returned to normal after about a 15-min period of recovery. RCrel strains did not show this effect; any extra mRNA accumulated during the previous starvation period was rapidly lost, but no oversynthesis occurred during the resumption of growth. (2) In trimethoprim-inhibited cultures supplemented with glycine and methionine, mRNA was produced at the same rate, relative to stable RNA species, as during normal growth. The evidence implied that decreased rates of ribosome attachment had no effect on the functional or chemical lifetime of the mRNA fraction. This suggests that mRNA stability does not depend on the frequency of translation by ribosomes. (3) Changes in the mRNA contents of trimethoprim-inhibited RCstr and RCrel cultures were noted soon after supplementation with glycine and methionine. These closely followed those observed in cultures recovering from simple amino acid withdrawal.
机译:研究了从营养不足时期恢复的大肠杆菌营养缺陷型中细胞含量和mRNA合成速率的变化。当添加甘氨酸和蛋氨酸缓解氨基酸缺乏时,对甲氧苄啶抑制的细菌菌株进行了平行研究。在后一种情况下,由于缺乏用于链起始的N-甲酰基甲硫酰基-tRNA fMet ,蛋白质合成仍然受到严重抑制,因此较少的核糖体附着在mRNA链上。 (1)在从氨基酸饥饿状态恢复的RC str 菌株中,mRNA短暂地过度合成,但在恢复15分钟后,其量恢复正常。 RC rel 菌株没有显示出这种作用。在先前的饥饿期中积累的任何多余的mRNA都会迅速丢失,但在恢复生长过程中不会发生过度合成。 (2)在补充有甘氨酸和蛋氨酸的甲氧苄啶抑制的培养物中,相对于稳定的RNA种类,mRNA的产生速率与正常生长期间相同。有证据表明,核糖体附着率降低对mRNA的功能或化学寿命没有影响。这表明mRNA的稳定性不取决于核糖体翻译的频率。 (3)补充甘氨酸和蛋氨酸后不久,观察到甲氧苄啶抑制的RC str 和RC rel 培养物中mRNA的变化。这些紧跟在从简单氨基酸撤除中恢复的培养物中观察到的那些。

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