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乳糖操纵子的碳代谢物阻遏。翻译的阻遏。

Carabolite repression of the lac operon. Repression of translation.

作者信息

Yudkin M D, Moses V

出版信息

Biochem J. 1969 Jun;113(2):423-8. doi: 10.1042/bj1130423.

Abstract
  1. Experiments were devised to show whether catabolite repression of beta-galactosidase synthesis operates at the level of transcription or of translation. Escherichia coli K12 was induced for a short period in non-repressing medium (glycerol-minimal medium), and transcription of the lac operon was terminated by either of two methods; glucose was then added as a source of the catabolite repressor during the subsequent translation of the accumulated beta-galactosidase messenger RNA. 2. When induced bacteria in glycerol medium were infected with T6 phage, which is known to halt transcription, the addition of glucose up to 3min. later diminished the yield of beta-galactosidase. 3. When induced bacteria in glycerol medium were removed from the inducer and resuspended in fresh medium (a process that is also known to halt transcription), the yield of enzyme was again diminished by the presence of glucose in the resuspension medium. 4. It is concluded that repression of beta-galactosidase synthesis can be brought about by the presence of glucose during the translation phase only. 5. In E. coli strain 300U the effect on translation was sufficient to account for almost all the catabolite repression of beta-galactosidase synthesis observed during exponential growth of the organism in glucose-minimal medium. In E. coli strain 200P, however, much more severe repression occurred during exponential growth, and an additional effect of glucose is postulated.
摘要
  1. 设计了一些实验来表明β-半乳糖苷酶合成的分解代谢物阻遏是在转录水平还是在翻译水平起作用。将大肠杆菌K12在非阻遏培养基(甘油基本培养基)中短时间诱导,然后通过两种方法之一终止乳糖操纵子的转录;随后在积累的β-半乳糖苷酶信使核糖核酸的翻译过程中加入葡萄糖作为分解代谢物阻遏物的来源。2. 当甘油培养基中的诱导细菌被已知能终止转录的T6噬菌体感染时,在3分钟后加入葡萄糖会降低β-半乳糖苷酶的产量。3. 当甘油培养基中的诱导细菌从诱导物中取出并重悬于新鲜培养基中(这一过程也已知能终止转录)时,重悬培养基中葡萄糖的存在再次降低了酶的产量。4. 得出的结论是,β-半乳糖苷酶合成的阻遏只能在翻译阶段由葡萄糖的存在引起。5. 在大肠杆菌300U菌株中,对翻译的影响足以解释在该生物体于葡萄糖基本培养基中指数生长期间观察到的几乎所有β-半乳糖苷酶合成的分解代谢物阻遏。然而,在大肠杆菌200P菌株中,指数生长期间发生了更严重的阻遏,推测葡萄糖还有额外的作用。

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