Novak R, Cauwels A, Charpentier E, Tuomanen E
St. Jude Children's Research Hospital, Memphis, Tennessee 38105, USA.
J Bacteriol. 1999 Feb;181(4):1126-33. doi: 10.1128/JB.181.4.1126-1133.1999.
The Escherichia coli Pst system belongs to the family of ABC transporters. It is part of a phosphate (PHO) regulon which is regulated by extracellular phosphate. Under conditions of phosphate limitation, the response regulator PhoB is phosphorylated by the histidine kinase PhoR and binds to promoters that share a consensus PHO box. Under conditions of phosphate excess, PhoR, Pst, and PhoU downregulate the PHO regulon. Screening of a library of pneumococcal mutants with defects in exported proteins revealed a putative two-component regulatory system, PnpR-PnpS, and a downstream ABC transporter, similar to the Pst system in E. coli including a gene encoding a PhoU protein. Similar to E. coli, mutagenesis of the ATP-binding cassette gene, pstB, resulted in decreased uptake of phosphate. The effects of the loss of the pneumococcal Pst system extended to decreased transformation and lysis. Withdrawal of phosphate led to transformation deficiency in the parent strain R6x but not to penicillin tolerance, suggesting that reduced bacterial death was independent of phosphate. None of these phenotypes was observed in the pneumococcal loss-of-function mutant phoU. By using a lacZ reporter construct, it was demonstrated that expression of the two-component regulatory system PnpR-PnpS was not influenced by different concentrations of phosphate. These results suggest a more complex role of the Pst system in pneumococcal physiology than in that of E. coli.
大肠杆菌的Pst系统属于ABC转运蛋白家族。它是由细胞外磷酸盐调控的磷酸盐(PHO)调节子的一部分。在磷酸盐限制条件下,应答调节因子PhoB被组氨酸激酶PhoR磷酸化,并与具有共有PHO框的启动子结合。在磷酸盐过量的条件下,PhoR、Pst和PhoU下调PHO调节子。对输出蛋白有缺陷的肺炎球菌突变体文库进行筛选,发现了一个假定的双组分调节系统PnpR - PnpS,以及一个下游ABC转运蛋白,类似于大肠杆菌中的Pst系统,包括一个编码PhoU蛋白的基因。与大肠杆菌类似,ATP结合盒基因pstB的诱变导致磷酸盐摄取减少。肺炎球菌Pst系统缺失的影响扩展到转化和裂解减少。去除磷酸盐导致亲本菌株R6x出现转化缺陷,但未导致青霉素耐受性,这表明细菌死亡减少与磷酸盐无关。在肺炎球菌功能缺失突变体phoU中未观察到这些表型。通过使用lacZ报告构建体,证明双组分调节系统PnpR - PnpS的表达不受不同浓度磷酸盐的影响。这些结果表明,Pst系统在肺炎球菌生理学中的作用比在大肠杆菌中更为复杂。