Glover Robert T, Kriakov Jordan, Garforth Scott J, Baughn Anthony D, Jacobs William R
Howard Hughes Medical Institute, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
J Bacteriol. 2007 Aug;189(15):5495-503. doi: 10.1128/JB.00190-07. Epub 2007 May 25.
Phosphate import is required for the growth of mycobacteria and is regulated by environmental inorganic phosphate (P(i)) concentrations, although the mechanism of this regulation has not been characterized. The expression of genes involved in P(i) acquisition is frequently regulated by two-component regulatory systems (2CRs) consisting of a sensor histidine kinase and a DNA-binding response regulator. In this work, we have identified the senX3-regX3 2CR as a P(i)-dependent regulator of genes involved in phosphate acquisition in Mycobacterium smegmatis. Characterization of senX3 mutants with different PhoA phenotypes suggests a dual role for SenX3 as a phosphatase or a phosphodonor for the response regulator RegX3, depending upon P(i) availability. Expression of PhoA activity required phosphorylation of RegX3, consistent with a role for phosphorylated RegX3 (RegX3 approximately P) as a transcriptional activator of phoA. Furthermore, purified RegX3 approximately P bound to promoter sequences from phoA, senX3, and the high-affinity phosphate transporter component pstS, demonstrating direct transcriptional control of all three genes. DNase I footprinting and primer extension analyses have further defined the DNA-binding region and transcriptional start site within the phoA promoter. A DNA motif consisting of an inverted repeat was identified in each of the promoters bound by RegX3 approximately P. Based upon our findings, we propose a model for P(i)-regulated gene expression mediated by SenX3-RegX3 in mycobacteria.
磷酸盐的导入是分枝杆菌生长所必需的,且受环境无机磷酸盐(P(i))浓度的调控,尽管这种调控机制尚未明确。参与P(i)摄取的基因表达通常受由传感组氨酸激酶和DNA结合反应调节因子组成的双组分调节系统(2CRs)调控。在这项研究中,我们已确定senX3-regX3 2CR是耻垢分枝杆菌中参与磷酸盐摄取的基因的P(i)依赖性调节因子。对具有不同PhoA表型的senX3突变体的表征表明,根据P(i)的可利用性,SenX3对反应调节因子RegX3具有磷酸酶或磷酸供体的双重作用。PhoA活性的表达需要RegX3的磷酸化,这与磷酸化的RegX3(RegX3P)作为phoA转录激活因子的作用一致。此外,纯化的RegX3P与phoA、senX3和高亲和力磷酸盐转运蛋白组分pstS的启动子序列结合,证明了对这三个基因的直接转录控制。DNase I足迹分析和引物延伸分析进一步确定了phoA启动子内的DNA结合区域和转录起始位点。在每个与RegX3~P结合的启动子中都鉴定出一个由反向重复组成的DNA基序。基于我们的研究结果,我们提出了一个分枝杆菌中由SenX3-RegX3介导的P(i)调节基因表达的模型。