Chatterjee Asita, Cui Yaya, Chatterjee Arun K
Division of Plant Sciences, University of Missouri, Columbia, MO 65211, USA.
J Bacteriol. 2009 Jul;191(14):4582-93. doi: 10.1128/JB.00154-09. Epub 2009 May 15.
RsmC and FlhDC are global regulators controlling extracellular proteins/enzymes, rsmB RNA, motility, and virulence of Erwinia carotovora subsp. carotovora. FlhDC, the master regulator of flagellar genes, controls these traits by positively regulating gacA, fliA, and rsmC and negatively regulating hexA. RsmC, on the other hand, is a negative regulator of extracellular proteins/enzymes, motility, and virulence since the deficiency of RsmC in FlhDC(+) strain results in overproduction of extracellular proteins/enzymes, hypermotility, and hypervirulence. These phenotypes are abolished in an RsmC(-) FlhDC(-) double mutant. We show that RsmC interferes with FlhDC action. Indeed, the expression of all three targets (i.e., gacA, rsmC, and fliA) positively regulated in E. carotovora subsp. carotovora by FlhDC is inhibited by RsmC. RsmC also partly relieves the inhibition of hexA expression by FlhDC. The results of yeast two-hybrid analysis revealed that RsmC binds FlhD and FlhDC, but not FlhC. We propose that binding of RsmC with FlhD/FlhDC interferes with its regulatory functions and that RsmC acts as an anti-FlhD(4)FlhC(2) factor. We document here for the first time that RsmC interferes with activation of fliA and motility in several members of the Enterobacteriaceae family. The extent of E. carotovora subsp. carotovora RsmC-mediated inhibition of FlhDC-dependent expression of fliA and motility varies depending upon enterobacterial species. The data presented here support the idea that differences in structural features in enterobacterial FlhD are responsible for differential susceptibility to E. carotovora subsp. carotovora RsmC action.
RsmC和FlhDC是全局性调控因子,控制胡萝卜软腐欧文氏菌胡萝卜软腐亚种的胞外蛋白/酶、rsmB RNA、运动性和毒力。FlhDC是鞭毛基因的主要调控因子,通过正向调控gacA、fliA和rsmC以及负向调控hexA来控制这些性状。另一方面,RsmC是胞外蛋白/酶、运动性和毒力的负调控因子,因为在FlhDC(+)菌株中RsmC的缺失会导致胞外蛋白/酶的过量产生、过度运动性和高毒力。这些表型在RsmC(-) FlhDC(-)双突变体中消失。我们表明RsmC会干扰FlhDC的作用。实际上,在胡萝卜软腐欧文氏菌胡萝卜软腐亚种中由FlhDC正向调控的所有三个靶标(即gacA、rsmC和fliA)的表达都受到RsmC的抑制。RsmC还部分缓解了FlhDC对hexA表达的抑制。酵母双杂交分析结果表明,RsmC与FlhD和FlhDC结合,但不与FlhC结合。我们提出RsmC与FlhD/FlhDC的结合会干扰其调控功能,并且RsmC作为一种抗FlhD(4)FlhC(2)因子发挥作用。我们首次在此证明RsmC会干扰肠杆菌科几个成员中fliA的激活和运动性。胡萝卜软腐欧文氏菌胡萝卜软腐亚种RsmC介导的对FlhDC依赖性fliA表达和运动性的抑制程度因肠杆菌种类而异。此处呈现的数据支持这样一种观点,即肠杆菌FlhD结构特征的差异导致了对胡萝卜软腐欧文氏菌胡萝卜软腐亚种RsmC作用的不同敏感性。