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警报素(p)ppGpp在依赖σ54的Po启动子处介导生理反应控制。

The alarmone (p)ppGpp mediates physiological-responsive control at the sigma 54-dependent Po promoter.

作者信息

Sze C C, Shingler V

机构信息

Department of Cell and Molecular Biology, Umeå University, Sweden.

出版信息

Mol Microbiol. 1999 Feb;31(4):1217-28. doi: 10.1046/j.1365-2958.1999.01264.x.

Abstract

Transcription from the Pseudomonas-derived sigma 54-dependent Po promoter of the dmp operon is mediated by the aromatic-responsive regulator DmpR. However, physiological control is superimposed on this regulatory system causing silencing of the DmpR-mediated transcriptional response in rich media until the transition between exponential and stationary phase is reached. Here, the positive role of the nutritional alarmone (p)ppGpp in DmpR regulation of the Po promoter has been identified and investigated in vivo. Overproduction of (p)ppGpp in a Pseudomonas reporter system was found to allow an immediate transcriptional response under normally non-permissive conditions. Conversely (p)ppGpp-deficient Escherichia coli strains were found to be severely defective in DmpR-mediated transcription, demonstrating the requirement for this metabolic signal. A subset of mutations in the beta, beta' and sigma 70 subunits of RNA polymerase, which confer prototrophy on ppGpp0 E. coli, was also found to restore specific DmpR-mediated transcription from Po, suggesting that the metabolic signal is mediated directly through the sigma 54-RNA polymerase. These data provide a direct mechanistic link between the physiological status of the cell and expression from sigma 54 promoters.

摘要

来自假单胞菌的dmp操纵子中依赖于σ⁵⁴的Po启动子的转录由芳香族响应调节因子DmpR介导。然而,生理控制叠加在这个调节系统之上,导致在丰富培养基中DmpR介导的转录反应沉默,直到达到指数期和稳定期之间的转变。在这里,营养警报素(p)ppGpp在DmpR对Po启动子的调节中的积极作用已在体内得到鉴定和研究。在假单胞菌报告系统中过量产生(p)ppGpp被发现可以在正常非允许条件下立即引发转录反应。相反,发现缺乏(p)ppGpp的大肠杆菌菌株在DmpR介导的转录中存在严重缺陷,这表明需要这种代谢信号。还发现RNA聚合酶的β、β'和σ⁷⁰亚基中的一组突变,这些突变赋予ppGpp⁰大肠杆菌原养型,也能恢复从Po启动子的特定DmpR介导的转录,这表明代谢信号是直接通过σ⁵⁴-RNA聚合酶介导的。这些数据提供了细胞生理状态与σ⁵⁴启动子表达之间的直接机制联系。

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