Suppr超能文献

串联启动子指导大肠杆菌核糖体RNA的合成。

Tandem promoters direct E. coli ribosomal RNA synthesis.

作者信息

Young R A, Steitz J A

出版信息

Cell. 1979 May;17(1):225-34. doi: 10.1016/0092-8674(79)90310-6.

Abstract

To determine the special feature of ribosomal RNA promoters that might account for the highly efficient and regulated synthesis of rRNA in E. coli, we have analyzed the beginnings of two ribosomal RNA operons, rrnD and rrnX. DNA sequences for 425 bp preceding those specifying mature 16s rRNA are reported. In vitro transcription of restriction endonuclease fragments containing this region from either operon reveals the presence of two promoters about 110 nucleotides apart; they are denoted P1 and P2. RNA synthesis from P1 is initiated with GTP at position -284 (relative to 16s sequences) in rrnD and with ATP at position -285 in rrnX. At P2, the RNA starts with CTP primarily at position-176 in both operons. The DNA sequences of the two operons are identical for 231 bp preceding the 16s rDNA (including a substantial region around P2); they then diverge almost completely, except for a notable 18 bp homology just preceding the transcription start site for P1. Certain sequences implicated in the recognition of promoters by E. coli RNA polymerase are clearly identifiable in both P1 and P2; other features include an extended region preceding P1 which is strikingly rich in AT base pairs. Possible mechansims by which these tandem promoters contribute to the high frequency of rRNA transcription and to the differential expression of the E. coli rrn operons are discussed.

摘要

为了确定核糖体RNA启动子的特殊特征,这些特征可能解释大肠杆菌中rRNA高效且受调控的合成,我们分析了两个核糖体RNA操纵子rrnD和rrnX的起始部分。报道了在指定成熟16S rRNA之前的425 bp的DNA序列。对来自任一操纵子的包含该区域的限制性内切酶片段进行体外转录,结果显示存在两个相距约110个核苷酸的启动子;它们被标记为P1和P2。来自P1的RNA合成在rrnD中以GTP在-284位(相对于16S序列)起始,在rrnX中以ATP在-285位起始。在P2处,RNA主要在两个操纵子的-176位以CTP起始。在16S rDNA之前的231 bp(包括P2周围的一个相当大的区域),两个操纵子的DNA序列是相同的;然后它们几乎完全不同,除了在P1转录起始位点之前有一个明显的18 bp同源性。在P1和P2中都能清楚地识别出某些与大肠杆菌RNA聚合酶识别启动子有关的序列;其他特征包括P1之前的一个延伸区域,该区域富含AT碱基对。本文讨论了这些串联启动子促进rRNA转录高频率以及大肠杆菌rrn操纵子差异表达的可能机制。

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