Black Wesley P, Xu Qian, Cadieux Christena Linn, Suh Sang-Jin, Shi Wenyuan, Yang Zhaomin
Department of Biological Sciences, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA.
Department of Biological Sciences, Auburn University, Auburn, AL 36849, USA.
Microbiology (Reading). 2009 Nov;155(Pt 11):3599-3610. doi: 10.1099/mic.0.031070-0. Epub 2009 Aug 14.
Myxococcus xanthus, a Gram-negative soil bacterium, undergoes multicellular development when nutrients become limiting. Aggregation, which is part of the developmental process, requires the surface motility of this organism. One component of M. xanthus motility, the social (S) gliding motility, enables the movement of cells in close physical proximity. Previous studies demonstrated that the cell surface-associated exopolysaccharide (EPS) is essential for S motility and that the Dif proteins form a chemotaxis-like pathway that regulates EPS production in M. xanthus. DifA, a homologue of methyl-accepting chemotaxis proteins (MCPs) in the Dif system, is required for EPS production, S motility and development. In this study, a spontaneous extragenic suppressor of a difA deletion was isolated in order to identify additional regulators of EPS production. The suppressor mutation was found to be a single base pair insertion in cheW7 at the che7 chemotaxis gene cluster. Further examination indicated that mutations in cheW7 may lead to the interaction of Mcp7 with DifC (CheW-like) and DifE (CheA-like) to reconstruct a functional pathway to regulate EPS production in the absence of DifA. In addition, the cheW7 mutation was found to partially suppress a pilA mutation in EPS production in a difA(+) background. Further deletion of difA from the pilA cheW7 double mutant resulted in a triple mutant that produced wild-type levels of EPS, implying that DifA (MCP-like) and Mcp7 compete for interactions with DifC and DifE in the modulation of EPS production.
黄色粘球菌是一种革兰氏阴性土壤细菌,当营养物质变得有限时,它会经历多细胞发育过程。聚集是发育过程的一部分,这需要该生物体的表面运动性。黄色粘球菌运动性的一个组成部分,即社会(S)滑行运动性,使细胞能够在紧密的物理接近度下移动。先前的研究表明,细胞表面相关的胞外多糖(EPS)对于S运动性至关重要,并且Dif蛋白形成了一种类似趋化性的途径,该途径调节黄色粘球菌中EPS的产生。DifA是Dif系统中甲基接受趋化蛋白(MCPs)的同源物,是EPS产生、S运动性和发育所必需的。在本研究中,为了鉴定EPS产生的其他调节因子,分离出了difA缺失的自发基因外抑制子。发现该抑制子突变是che7趋化基因簇中cheW7的单个碱基对插入。进一步的研究表明,cheW7中的突变可能导致Mcp7与DifC(类CheW)和DifE(类CheA)相互作用,从而在没有DifA的情况下重建调节EPS产生的功能途径。此外,发现cheW7突变在difA(+)背景下部分抑制了pilA突变在EPS产生中的作用。从pilA cheW7双突变体中进一步缺失difA导致产生野生型EPS水平的三突变体,这意味着DifA(类MCP)和Mcp7在调节EPS产生过程中竞争与DifC和DifE的相互作用。