Suppr超能文献

氨酰转移核糖核酸在大肠杆菌核糖核酸合成调控中的作用。

Role of aminoacyl-transfer ribonucleic acid in the regulation of ribonucleic acid synthesis in Escherichia coli.

作者信息

Morris D W, DeMoss J A

出版信息

J Bacteriol. 1965 Dec;90(6):1624-31. doi: 10.1128/jb.90.6.1624-1631.1965.

Abstract

Morris, D. W. (University of California, San Diego), and J. A. DeMoss. Role of aminoacyl-transfer ribonucleic acid in the regulation of ribonucleic acid synthesis in Escherichia coli. J. Bacteriol. 90:1624-1631. 1965.-A leucine auxotroph of Escherichia coli was examined for its rate of ribonucleic acid (RNA) synthesis and the level of charged leucine-, arginine-, and valine-specific transfer RNA (tRNA) during the exponential growth period and when growth was limited by leucine starvation. During the logarithmic growth period, the leucine-specific tRNA was 70% charged, arginine-specific tRNA was 30% charged, and the valine-specific tRNA was 80% charged. When leucine became limiting, RNA synthesis was inhibited and the levels of charged arginine- and valine-specific tRNA remained constant, whereas the level of charged leucine-specific tRNA dropped to 40%. Examination of the leucyl-tRNA during the leucine starvation period showed that this 40% level is maintained by protein turnover. Addition of chloramphenicol or puromycin to a leucine-starved culture derepressed RNA synthesis. In the presence of chloramphenicol, the leucine-specific tRNA was fully charged; however, in the presence of puromycin the amount of charged leucine-specific tRNA remained at the starved level. Therefore, during leucine starvation the level of uncharged leucine-specific tRNA is not invariably correlated with the rate of RNA synthesis. We propose that it is the availability of charged tRNA and not the amount of uncharged tRNA which is the important factor in the amino acid control of RNA synthesis.

摘要

莫里斯,D. W.(加利福尼亚大学圣地亚哥分校)和J. A. 德莫斯。氨酰基转移核糖核酸在大肠杆菌核糖核酸合成调控中的作用。《细菌学杂志》90:1624 - 1631。1965年。——对大肠杆菌的一个亮氨酸营养缺陷型菌株在指数生长期以及亮氨酸饥饿限制生长时的核糖核酸(RNA)合成速率和亮氨酸、精氨酸及缬氨酸特异性转移RNA(tRNA)的负载水平进行了检测。在对数生长期,亮氨酸特异性tRNA的负载率为70%,精氨酸特异性tRNA的负载率为30%,缬氨酸特异性tRNA的负载率为80%。当亮氨酸变得有限时,RNA合成受到抑制,精氨酸和缬氨酸特异性tRNA的负载水平保持不变,而亮氨酸特异性tRNA的负载水平降至40%。对亮氨酸饥饿期的亮氨酰 - tRNA进行检测表明,这个40%的水平是由蛋白质周转维持的。向亮氨酸饥饿的培养物中添加氯霉素或嘌呤霉素可解除对RNA合成的抑制。在氯霉素存在的情况下,亮氨酸特异性tRNA被完全负载;然而,在嘌呤霉素存在的情况下亮氨酸特异性tRNA的负载量仍维持在饥饿水平。因此,在亮氨酸饥饿期间,未负载的亮氨酸特异性tRNA的水平与RNA合成速率并非总是相关的。我们提出,在氨基酸对RNA合成的控制中,重要的因素是负载tRNA的可用性而非未负载tRNA的量。

相似文献

引用本文的文献

本文引用的文献

1
Regulation of ribosomal and transfer RNA synthesis.核糖体RNA和转运RNA合成的调控。
J Mol Biol. 1962 Mar;4:193-210. doi: 10.1016/s0022-2836(62)80051-5.
2
A fractionating column for analysis of nucleic acids.用于核酸分析的分馏柱。
Anal Biochem. 1960 Jun;1:66-77. doi: 10.1016/0003-2697(60)90020-8.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验