Tu Xuanlin, Latifi Tammy, Bougdour Alexandre, Gottesman Susan, Groisman Eduardo A
Department of Molecular Microbiology and Howard Hughes Medical Institute, Washington University School of Medicine, St. Louis, MO 63110, USA.
Proc Natl Acad Sci U S A. 2006 Sep 5;103(36):13503-8. doi: 10.1073/pnas.0606026103. Epub 2006 Aug 28.
The sigma factor RpoS regulates the expression of many stress response genes and is required for virulence in several bacterial species. We now report that RpoS accumulates when Salmonella enterica serovar Typhimurium is growing logarithmically in media with low Mg(2+) concentrations. This process requires the two-component regulatory system PhoP/PhoQ, which is specifically activated in low Mg(2+). We show that PhoP controls RpoS protein turnover by serving as a transcriptional activator of the iraP (yaiB) gene, which encodes a product that enhances RpoS stability by interacting with RssB, the protein that normally delivers RpoS to the ClpXP protease for degradation. Mutation of the phoP gene rendered Salmonella as sensitive to hydrogen peroxide as an rpoS mutant after growth in low Mg(2+). In Escherichia coli, low Mg(2+) leads to only modest RpoS stabilization, and iraP is not regulated by PhoP/PhoQ. These findings add the sigma factor RpoS to the regulatory proteins and two-component systems that are elevated in a PhoP/PhoQ-dependent fashion when Salmonella face low Mg(2+) environments. Our data also exemplify the critical differences in regulatory circuits that exist between the closely related enteric bacteria Salmonella and E. coli.
σ因子RpoS调控许多应激反应基因的表达,并且在几种细菌的致病过程中是必需的。我们现在报道,当鼠伤寒沙门氏菌在低镁离子浓度的培养基中对数生长时,RpoS会积累。这一过程需要双组分调节系统PhoP/PhoQ,该系统在低镁离子环境中被特异性激活。我们发现PhoP通过作为iraP(yaiB)基因的转录激活因子来控制RpoS蛋白的周转,iraP基因编码一种产物,该产物通过与RssB相互作用来增强RpoS的稳定性,RssB是一种通常将RpoS递送至ClpXP蛋白酶进行降解的蛋白质。在低镁离子环境中生长后,phoP基因突变使沙门氏菌对过氧化氢的敏感性与rpoS突变体一样。在大肠杆菌中,低镁离子仅导致RpoS适度稳定,并且iraP不受PhoP/PhoQ调控。这些发现表明,当沙门氏菌面临低镁离子环境时,σ因子RpoS属于以PhoP/PhoQ依赖方式上调的调节蛋白和双组分系统。我们的数据还例证了密切相关的肠道细菌沙门氏菌和大肠杆菌之间存在的调控回路的关键差异。