Song Haowei, Kong Wei, Weatherspoon Natasha, Qin Guozheng, Tyler William, Turk John, Curtiss Roy, Shi Yixin
Mass Spectrometry Resource, Division of Endocrinology, Diabetes, and Metabolism, Department of Internal Medicine, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Biol Chem. 2008 Oct 17;283(42):28158-68. doi: 10.1074/jbc.M801058200. Epub 2008 Aug 4.
Activation of the transcriptional regulator SlyA by the PhoP/PhoQ two-component system controls intracellular expression of numerous factors influencing Salmonella virulence. By dissecting the SlyA regulon using stable isotope labeling with amino acids in cell culture analysis, we found that SlyA enhances overall transcription of PhoP-activated loci. This amplification of cellular responses to Mg2+ occurs when SlyA binds to the phoPQ promoter thereby activating phoP autoregulation via a positive feedback mechanism. SlyA footprints a DNA region located one helical turn upstream of the PhoP box, which overlaps the H-NS-binding motif required for signal-dependent phoP repression in high Mg2+ conditions. Therefore, binding of SlyA likely antagonizes H-NS and facilitates the interaction of PhoP to its own promoter, subsequently activating the phoPQ operon. Establishment of this regulatory circuit allows SlyA to exert its effect on the PhoP/PhoQ system specifically in Salmonella, which may confer an additional transcriptional regulation. Thus, our results provide a molecular mechanism that determines SlyA-dependent activation of PhoP-regulated genes in modulating Salmonella virulence. Evidence from this study also suggests a function of SlyA as a mediator in signal transduction from the PhoP/PhoQ system to other bacterial two-component systems in Salmonella.
PhoP/PhoQ双组分系统对转录调节因子SlyA的激活作用,控制着众多影响沙门氏菌毒力的因子在细胞内的表达。通过在细胞培养分析中使用氨基酸稳定同位素标记来剖析SlyA调控子,我们发现SlyA增强了PhoP激活基因座的整体转录。当SlyA与phoPQ启动子结合时,会通过正反馈机制激活phoP的自我调节,从而发生对Mg2+细胞反应的这种放大。SlyA覆盖了位于PhoP框上游一个螺旋圈的DNA区域;在高Mg2+条件下,该区域与信号依赖性phoP抑制所需的H-NS结合基序重叠。因此,SlyA的结合可能拮抗H-NS,并促进PhoP与其自身启动子的相互作用,随后激活phoPQ操纵子。这种调节回路的建立使SlyA能够在沙门氏菌中对PhoP/PhoQ系统发挥其特异性作用,这可能赋予额外的转录调控。因此,我们的结果提供了一种分子机制,该机制决定了SlyA依赖性激活PhoP调控基因在调节沙门氏菌毒力中的作用。这项研究的证据还表明,SlyA在从PhoP/PhoQ系统到沙门氏菌中其他细菌双组分系统的信号转导中起介导作用。