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大肠杆菌中的核糖体RNA转录

rRNA transcription in Escherichia coli.

作者信息

Paul Brian J, Ross Wilma, Gaal Tamas, Gourse Richard L

机构信息

Department of Bacteriology, University of Wisconsin, Madison, Wisconsin 53706, USA.

出版信息

Annu Rev Genet. 2004;38:749-70. doi: 10.1146/annurev.genet.38.072902.091347.

Abstract

Ribosomal RNA transcription is the rate-limiting step in ribosome synthesis in bacteria and has been investigated intensely for over half a century. Multiple mechanisms ensure that rRNA synthesis rates are appropriate for the cell's particular growth condition. Recently, important advances have been made in our understanding of rRNA transcription initiation in Escherichia coli. These include (a) a model at the atomic level of the network of protein-DNA and protein-protein interactions that recruit RNA polymerase to rRNA promoters, accounting for their extraordinary strength; (b) discovery of the nonredundant roles of two small molecule effectors, ppGpp and the initiating NTP, in regulation of rRNA transcription initiation; and (c) identification of a new component of the transcription machinery, DksA, that is absolutely required for regulation of rRNA promoter activity. Together, these advances provide clues important for our molecular understanding not only of rRNA transcription, but also of transcription in general.

摘要

核糖体RNA转录是细菌核糖体合成中的限速步骤,半个多世纪以来一直受到深入研究。多种机制确保rRNA合成速率适合细胞的特定生长条件。最近,我们对大肠杆菌中rRNA转录起始的理解取得了重要进展。这些进展包括:(a)在原子水平上关于蛋白质-DNA和蛋白质-蛋白质相互作用网络的模型,该网络将RNA聚合酶招募到rRNA启动子上,解释了它们非凡的强度;(b)发现了两种小分子效应物ppGpp和起始NTP在rRNA转录起始调控中的非冗余作用;(c)鉴定出转录机制的一个新组分DksA,它是调控rRNA启动子活性绝对必需的。这些进展共同为我们不仅在分子水平上理解rRNA转录,而且在总体上理解转录提供了重要线索。

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