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嘌呤缺乏的大肠杆菌中核糖核酸的合成及其与氨基酸饥饿效应的比较。

Synthesis of ribonucleic acid in purine-deficient Escherichia coli and a comparison with the effects of amino acid starvation.

作者信息

Varney N F, Thomas G A, Burton K

出版信息

Biochem J. 1970 Nov;120(1):125-32. doi: 10.1042/bj1200125.

Abstract
  1. Experiments with rifampicin and stringent strains of Escherichia coli (pro(-)purB(-)rel(+)) indicate that purine deficiency does not decrease and may considerably increase the potential for RNA synthesis by RNA polymerase molecules that are bound to DNA and have already commenced transcription. 2. DNA-RNA hybridization experiments indicate that purine starvation increases the distribution of bound RNA polymerase molecules between the cistrons for mRNA and those for stable RNA. 3. Synthesis of beta-galactosidase mRNA is more dependent on the ability to synthesize guanine nucleotides than on the ability to synthesize adenine nucleotides. 4. Amino acid starvation tends to decrease the potential for RNA synthesis by RNA polymerase molecules bound to DNA. 5. Since this effect differs from that due to purine starvation, amino acid control of RNA synthesis does not appear to operate solely by causing a deficiency of purine nucleotides. 6. The results are discussed in terms of the ability to initiate RNA chains and to extend them under different circumstances.
摘要
  1. 用利福平对大肠杆菌严格菌株(pro(-)purB(-)rel(+))进行的实验表明,嘌呤缺乏不会降低且可能显著增加与DNA结合并已开始转录的RNA聚合酶分子的RNA合成潜力。2. DNA-RNA杂交实验表明,嘌呤饥饿会增加结合的RNA聚合酶分子在mRNA顺反子和稳定RNA顺反子之间的分布。3. β-半乳糖苷酶mRNA的合成更依赖于合成鸟嘌呤核苷酸的能力,而不是合成腺嘌呤核苷酸的能力。4. 氨基酸饥饿往往会降低与DNA结合的RNA聚合酶分子的RNA合成潜力。5. 由于这种效应与嘌呤饥饿引起的效应不同,RNA合成的氨基酸控制似乎并非仅通过导致嘌呤核苷酸缺乏来起作用。6. 根据在不同情况下启动RNA链并延伸它们的能力对结果进行了讨论。

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