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Regulation of Ribonucleic Acid Synthesis by Histidine and Methionine During Recovery of Escherichia coli from Magnesium Starvation

机译:从镁饥饿中回收大肠埃希菌过程中组氨酸和蛋氨酸合成核糖核酸的调控

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During magnesium starvation of Escherichia coli B, most of the ribosomes break down to low-molecular-weight components. When magnesium is restored to the medium, the cells recover. The rate of recovery can be increased greatly by supplementing the growth medium with a mixture of 21 amino acids. This increased rate of recovery is shown to be due to the effect of only two amino acids, histidine and methionine, which initially stimulate accumulation of cellular ribonucleic acid without increasing the rate of protein synthesis. In contrast, histidine and methionine supplementation to logarithmically growing E. coli B is not as effective in stimulating growth as is the complete amino acid mixture. Since cells recovering from magnesium starvation preferentially synthesize ribosomes, it is possible that histidine and methionine play a special role(s) in ribosomal ribonucleic acid synthesis or stability.
机译:大肠杆菌 B的镁饥饿期间,大多数核糖体分解为低分子量成分。当镁还原到培养基中时,细胞就会恢复。通过向生长培养基中添加21种氨基酸的混合物,可以大大提高回收率。回收率的提高表明是由于只有两个氨基酸(组氨酸和蛋氨酸)的作用,它们最初会刺激细胞核糖核酸的积累而不增加蛋白质的合成速率。相反,向对数生长的 E补充组氨酸和蛋氨酸。大肠杆菌B在刺激生长方面不如完整的氨基酸混合物有效。由于从镁饥饿中恢复的细胞优先合成核糖体,因此组氨酸和蛋氨酸可能在核糖体核糖核酸的合成或稳定性中起特殊作用。

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