Rao L, Ross W, Appleman J A, Gaal T, Leirmo S, Schlax P J, Record M T, Gourse R L
Department of Bacteriology, University of Wisconsin, Madison 53706.
J Mol Biol. 1994 Feb 4;235(5):1421-35. doi: 10.1006/jmbi.1994.1098.
The extraordinary strength of the Escherichia coli rRNA promoter rrnB P1 derives primarily from sequences upstream of the core (-10, -35) region. We find that sequences between -40 and -60 increase the activity of this promoter at least 30-fold in vitro and in vivo. This region, which we refer to as the upstream (UP) element, is located between the -35 consensus hexamer and the previously characterized binding sites for the rRNA transcription factor Fis. The effect of the UP element is independent of Fis in vivo, and independent of any other proteins besides RNA polymerase (RNAP) in vitro. The UP element increases the overall second-order rate constant for association of RNAP with the promoter (ka) and probably the apparent overall first-order isomerization constant (ki). Together with the previously reported protection of the UP element region by RNAP in footprinting experiments, these results indicate that rrnB P1 has an "extended" promoter structure, consisting of the UP element and the core promoter region. We find that the UP element is a separable promoter module that can function to increase the activity of the lac core promoter in an rrnB P1-lac hybrid promoter construct. A functional UP element is not absolutely essential for stimulation of rrnB P1 by the Fis protein.
大肠杆菌rRNA启动子rrnB P1的非凡强度主要源于核心(-10,-35)区域上游的序列。我们发现,-40至-60之间的序列在体外和体内可使该启动子的活性至少增加30倍。我们将该区域称为上游(UP)元件,它位于-35共有六聚体与先前已鉴定的rRNA转录因子Fis的结合位点之间。UP元件的作用在体内不依赖于Fis,在体外不依赖于除RNA聚合酶(RNAP)之外的任何其他蛋白质。UP元件增加了RNAP与启动子结合的整体二级速率常数(ka)以及可能的表观一级异构化常数(ki)。结合先前报道的足迹实验中RNAP对UP元件区域的保护,这些结果表明rrnB P1具有“扩展”的启动子结构,由UP元件和核心启动子区域组成。我们发现UP元件是一个可分离的启动子模块,在rrnB P1-lac杂交启动子构建体中可用于增加lac核心启动子的活性。功能性UP元件对于Fis蛋白刺激rrnB P1并非绝对必要。