Department of Pathobiological Sciences, University of Wisconsin—Madison, 1656 Linden Dr, Madison,Wisconsin 53706, USA.
J Bacteriol. 2011 Oct;193(20):5683-91. doi: 10.1128/JB.00428-11. Epub 2011 Aug 19.
Brucella melitensis encounters a variety of conditions and stimuli during its life cycle--including environmental growth, intracellular infection, and extracellular dissemination--which necessitates flexibility of bacterial signaling to promote virulence. Cyclic-di-GMP is a bacterial secondary signaling molecule that plays an important role in adaptation to changing environments and altering virulence in a number of bacteria. To investigate the role of cyclic-di-GMP in B. melitensis, all 11 predicted cyclic-di-GMP-metabolizing proteins were separately deleted and the effect on virulence was determined. Three of these cyclic-di-GMP-metabolizing proteins were found to alter virulence. Deletion of the bpdA and bpdB genes resulted in attenuation of virulence of the bacterium, while deletion of the cgsB gene produced a hypervirulent strain. In a Vibrio reporter system to monitor apparent alteration in levels of cyclic-di-GMP, both BpdA and BpdB displayed a phenotype consistent with cyclic-di-GMP-specific phosphodiesterases, while CgsB displayed a cyclic-di-GMP synthase phenotype. Further analysis found that deletion of bpdA resulted in a dramatic decrease in flagellar promoter activities, and a flagellar mutant showed similar phenotypes to the bpdA and bpdB mutant strains in mouse models of infection. These data indicate a potential role for regulation of flagella in Brucella melitensis via cyclic-di-GMP.
布氏杆菌遇到了各种条件和刺激在其生命周期-包括环境的增长,细胞内感染和细胞外传播-这需要细菌信号的灵活性,以促进毒力。环二鸟苷酸是一种细菌的二级信号分子,在适应不断变化的环境和改变许多细菌的毒力方面发挥着重要作用。为了研究环二鸟苷酸在 B. melitensis 中的作用,分别删除了 11 个预测的环二鸟苷酸代谢蛋白,并确定了其对毒力的影响。这 11 个环二鸟苷酸代谢蛋白中的 3 个被发现改变了毒力。bpdA 和 bpdB 基因的缺失导致细菌毒力减弱,而 cgsB 基因的缺失产生了超毒力菌株。在监测环二鸟苷酸水平明显变化的 Vibrio 报告系统中,BpdA 和 BpdB 均表现出与环二鸟苷酸特异性磷酸二酯酶一致的表型,而 CgsB 则表现出环二鸟苷酸合酶表型。进一步分析发现,bpdA 的缺失导致鞭毛启动子活性显著下降,鞭毛突变体在感染小鼠模型中表现出与 bpdA 和 bpdB 突变株相似的表型。这些数据表明,环二鸟苷酸可能通过调节布氏杆菌的鞭毛来调节其毒力。