Tomoyasu Toshifumi, Ohkishi Tomiko, Ukyo Yoshifumi, Tokumitsu Akane, Takaya Akiko, Suzuki Masato, Sekiya Kachiko, Matsui Hidenori, Kutsukake Kazuhiro, Yamamoto Tomoko
Department of Microbiology and Molecular Genetics, Graduate School of Pharmaceutical Sciences, Chiba University, Chiba 263-8522, Japan.
J Bacteriol. 2002 Feb;184(3):645-53. doi: 10.1128/JB.184.3.645-653.2002.
The ClpXP protease is a member of the ATP-dependent protease family and plays a dynamic role in the control of availability of regulatory proteins and the breakdown of abnormal and misfolded proteins. The proteolytic activity is rendered by the ClpP component, while the substrate specificity is determined by the ClpX component that has ATPase activity. We describe here a new role of the ClpXP protease in Salmonella enterica serovar Typhimurium in which ClpXP is involved in the regulation of flagellum synthesis. Cells deleted for ClpXP show "hyperflagellate phenotype," exhibit overproduction of the flagellar protein, and show a fourfold increase in the rate of transcription of the fliC encoding flagellar filament. The assay for promoter activity of the genes responsible for expression of the fliC showed that the depletion of ClpXP results in dramatic enhancement of the expression of the fliA encoding sigma factor final sigma(28), leaving the expression level of the flhD master operon lying at the top of the transcription hierarchy of flagellar regulon almost normal. These results suggest that the ClpXP may be responsible for repressing the expression of flagellar regulon through the control of the FlhD/FlhC master regulators at the posttranscriptional and/or posttranslational levels. Proteome analysis of proteins secreted from the mutant cells deficient for flhDC and clpXP genes demonstrated that the DeltaflhD mutation abolished the enhanced effect by DeltaclpXP mutation on the production of flagellar proteins, suggesting that the ClpXP possibly defines a regulatory pathway affecting the expression of flagellar regulon that is dependent on FlhD/FlhC master regulators.
ClpXP蛋白酶是ATP依赖性蛋白酶家族的成员,在调控蛋白的可用性控制以及异常和错误折叠蛋白的降解中发挥动态作用。蛋白水解活性由ClpP组分提供,而底物特异性由具有ATP酶活性的ClpX组分决定。我们在此描述了ClpXP蛋白酶在肠炎沙门氏菌鼠伤寒血清型中的新作用,其中ClpXP参与鞭毛合成的调控。缺失ClpXP的细胞表现出“多鞭毛表型”,鞭毛蛋白过度产生,并且编码鞭毛丝的fliC转录速率增加了四倍。对负责fliC表达的基因的启动子活性测定表明,ClpXP的缺失导致编码σ因子σ28的fliA表达显著增强,而鞭毛调节子转录层次顶端的flhD主操纵子的表达水平几乎正常。这些结果表明,ClpXP可能通过在转录后和/或翻译后水平控制FlhD/FlhC主调节因子来抑制鞭毛调节子的表达。对flhDC和clpXP基因缺陷的突变细胞分泌的蛋白质进行蛋白质组分析表明,ΔflhD突变消除了ΔclpXP突变对鞭毛蛋白产生的增强作用,这表明ClpXP可能定义了一条影响鞭毛调节子表达的调控途径,该途径依赖于FlhD/FlhC主调节因子。