Joslin Stephanie N, Hendrixson David R
University of Texas Southwestern Medical School, Department of Microbiology, 5323 Harry Hines Boulevard, Dallas, TX 75390-9048, USA.
J Bacteriol. 2009 Apr;191(8):2656-67. doi: 10.1128/JB.01689-08. Epub 2009 Feb 6.
Activation of sigma(54)-dependent gene expression essential for formation of flagella in Campylobacter jejuni requires the components of the inner membrane-localized flagellar export apparatus and the FlgSR two-component regulatory system. In this study, we characterized the FlgS sensor kinase and how activation of the protein is linked to the flagellar export apparatus. We found that FlgS is localized to the C. jejuni cytoplasm and that His141 of FlgS is essential for autophosphorylation, phosphorelay to the cognate FlgR response regulator, motility, and expression of sigma(54)-dependent flagellar genes. Mutants with incomplete flagellar export apparatuses produced wild-type levels of FlgS and FlgR, but they were defective for signaling through the FlgSR system. By using genetic approaches, we found that FlgSR activity is linked to and downstream of the flagellar export apparatus in a regulatory cascade that terminates in expression of sigma(54)-dependent flagellar genes. By analyzing defined flhB and fliI mutants of C. jejuni that form flagellar export apparatuses that are secretion incompetent, we determined that formation of the apparatus is required to contribute to the signal sensed by FlgS to terminate in activation of expression of sigma(54)-dependent flagellar genes. Considering that the flagellar export apparatuses of Escherichia coli and Salmonella species influence sigma(28)-dependent flagellar gene expression, our work expands the signaling activity of the apparatuses to include sigma(54)-dependent pathways of C. jejuni and possibly other motile bacteria. This study indicates that these apparatuses have broader functions beyond flagellar protein secretion, including activation of essential two-component regulatory systems required for expression of sigma(54)-dependent flagellar genes.
空肠弯曲杆菌中鞭毛形成所必需的σ⁵⁴依赖型基因表达的激活需要内膜定位的鞭毛输出装置的组件和FlgSR双组分调节系统。在本研究中,我们对FlgS传感激酶进行了表征,并研究了该蛋白的激活与鞭毛输出装置的联系。我们发现FlgS定位于空肠弯曲杆菌的细胞质中,且FlgS的组氨酸141对于自身磷酸化、向同源FlgR反应调节因子的磷酸传递、运动性以及σ⁵⁴依赖型鞭毛基因的表达至关重要。具有不完整鞭毛输出装置的突变体产生野生型水平的FlgS和FlgR,但它们在通过FlgSR系统进行信号传导方面存在缺陷。通过遗传学方法,我们发现FlgSR活性在一个调节级联中与鞭毛输出装置相联系且位于其下游,该级联终止于σ⁵⁴依赖型鞭毛基因的表达。通过分析空肠弯曲杆菌中形成无分泌能力的鞭毛输出装置的特定flhB和fliI突变体,我们确定该装置的形成是FlgS所感知信号得以终止从而激活σ⁵⁴依赖型鞭毛基因表达所必需的。鉴于大肠杆菌和沙门氏菌属的鞭毛输出装置影响σ²⁸依赖型鞭毛基因表达,我们的工作将这些装置的信号传导活性扩展至包括空肠弯曲杆菌以及可能其他运动细菌的σ⁵⁴依赖型途径。这项研究表明,这些装置具有超出鞭毛蛋白分泌的更广泛功能,包括激活σ⁵⁴依赖型鞭毛基因表达所需的关键双组分调节系统。