Instituto de Investigaciones Biotecnológicas, Universidad Nacional de General San Martín, Av. General Paz 5445, INTI, Ed. 24. San Martín 1650, Buenos Aires, Argentina.
J Bacteriol. 2010 Jan;192(1):217-24. doi: 10.1128/JB.01124-09.
Type IV secretion systems (T4SS) are multicomponent machineries involved in the translocation of effector molecules across the bacterial cell envelope. The virB operon of Brucella abortus codes for a T4SS that is essential for virulence and intracellular multiplication of the bacterium in the host. Previous studies showed that the virB operon of B. abortus is tightly regulated within the host cells. In order to identify factors implicated in the control of virB expression, we searched for proteins of Brucella that directly bind to the virB promoter (P(virB)). Using different procedures, we isolated a 27-kDa protein that binds specifically to P(virB). This protein was identified as HutC, the transcriptional repressor of the histidine utilization (hut) genes. Analyses of virB and hut promoter activity revealed that HutC exerts two different roles: it acts as a coactivator of transcription of the virB operon, whereas it represses the hut genes. Such activities were observed both intracellularly and in bacteria incubated under conditions that resemble the intracellular environment. Electrophoresis mobility shift assays (EMSA) and DNase I footprinting experiments revealed the structure, affinity, and localization of the HutC-binding sites and supported the regulatory role of HutC in both hut and virB promoters. Taken together, these results indicate that Brucella coopted the function of HutC to coordinate the Hut pathway with transcriptional regulation of the virB genes, probably as a way to sense its own metabolic state and develop adaptive responses to overcome intracellular host defenses.
IV 型分泌系统(T4SS)是一种多成分的机制,参与效应分子在细菌细胞包膜中的转运。布鲁氏菌流产株的 virB 操纵子编码一种 T4SS,该系统对于细菌在宿主中的毒力和细胞内增殖至关重要。先前的研究表明,布鲁氏菌流产株的 virB 操纵子在宿主细胞内受到严格调控。为了鉴定参与 virB 表达调控的因素,我们搜索了与 virB 启动子(P(virB))直接结合的布鲁氏菌蛋白。使用不同的程序,我们分离到一种 27kDa 的蛋白,它特异性地结合 P(virB)。该蛋白被鉴定为 HutC,是组氨酸利用(hut)基因的转录阻遏物。virB 和 hut 启动子活性分析表明,HutC 发挥两种不同的作用:它作为 virB 操纵子转录的共激活因子,同时它抑制 hut 基因。这种活性在细胞内和在类似于细胞内环境的条件下孵育的细菌中都观察到。电泳迁移率变动分析(EMSA)和 DNase I 足迹实验揭示了 HutC 结合位点的结构、亲和力和定位,并支持了 HutC 在 hut 和 virB 启动子中的调节作用。综上所述,这些结果表明,布鲁氏菌采用了 HutC 的功能来协调 Hut 途径与 virB 基因的转录调控,可能是一种感知自身代谢状态并产生适应性反应以克服细胞内宿主防御的方式。