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PhoP-P与RNA聚合酶σA全酶足以启动枯草芽孢杆菌中Pho调控子启动子的转录:编码区内的PhoP-P激活位点在体外可刺激转录。

PhoP-P and RNA polymerase sigmaA holoenzyme are sufficient for transcription of Pho regulon promoters in Bacillus subtilis: PhoP-P activator sites within the coding region stimulate transcription in vitro.

作者信息

Qi Y, Hulett F M

机构信息

Department of Biological Sciences, University of Illinois at Chicago, 60607, USA.

出版信息

Mol Microbiol. 1998 Jun;28(6):1187-97. doi: 10.1046/j.1365-2958.1998.00882.x.

Abstract

The Bacillus subtilis pstS operon and phoA gene are members of the Pho regulon that is controlled by PhoR, a histidine kinase, and PhoP, a response regulator. Footprinting analysis showed that phosphorylated PhoP extended the PhoP protected region in pstS and phoA promoters, and also bound to a separate site within the coding region of each gene. Our previous in vivo studies have shown that, in contrast to other Pho regulon promoters that are not expressed in either phoP or phoR mutants, a low-level induction from the pstS promoter (25% of parent strain) can be detected in a phoR mutant. In this study, by using an in vitro transcription system, we demonstrate that (i) only phosphorylated PhoP is a transcriptional activator of the pstS operon and of the phoA gene; (ii) phosphorylated PhoP and RNA polymerase sigmaA holoenzyme are sufficient for in vitro transcription of the pstS promoter and the phoA promoter; (iii) the activation of the pstS promoter requires lower concentrations of phosphorylated PhoP than does the phoA promoter for transcription; and (iv) PhoP binding sites in both the pstS promoter core binding region and in the 5' coding region of the gene, which have been identified by footprinting analysis, are important for the transcription of the pstS promoter in vitro.

摘要

枯草芽孢杆菌的pstS操纵子和phoA基因是Pho调控子的成员,该调控子由组氨酸激酶PhoR和反应调节因子PhoP控制。足迹分析表明,磷酸化的PhoP扩展了pstS和phoA启动子中PhoP的保护区域,并且还与每个基因编码区内的一个单独位点结合。我们之前的体内研究表明,与在phoP或phoR突变体中均不表达的其他Pho调控子启动子不同,在phoR突变体中可以检测到来自pstS启动子的低水平诱导(亲本菌株的25%)。在本研究中,通过使用体外转录系统,我们证明:(i)只有磷酸化的PhoP是pstS操纵子和phoA基因的转录激活因子;(ii)磷酸化的PhoP和RNA聚合酶σA全酶足以进行pstS启动子和phoA启动子的体外转录;(iii)与phoA启动子转录相比,pstS启动子的激活需要更低浓度的磷酸化PhoP;(iv)通过足迹分析确定的pstS启动子核心结合区域和基因5'编码区域中的PhoP结合位点,对于体外pstS启动子的转录很重要。

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