Kobayashi Kazuo
Graduate School of Information Science, Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma, Nara 630-0192, Japan.
Mol Microbiol. 2007 Oct;66(2):395-409. doi: 10.1111/j.1365-2958.2007.05923.x. Epub 2007 Sep 10.
In natural environments, bacteria fluctuate between growth as motile cells and growth as sessile, biofilm-forming cells. However, what controls the transition between these two-growth modes in Bacillus subtilis is not well understood yet. The degU mutation prevents both flagellum formation and biofilm formation, suggesting that one of the transition mechanisms may underlie regulation of the DegU activity. The expression profiles of DegU-regulated genes differed; flagellar genes and several unknown genes were expressed during the exponential phase, whereas other genes were induced in the stationary phase. The degS mutation did not affect transcription of the flgB-sigD operon, but reduced transcription of sigma(D)-dependent flagellar genes, degU and other DegU-regulated genes. In addition, the degQ mutation did not affect transcription of flagellar genes but reduce transcription of other DegU-regulated genes. Purified DegQ protein stimulated phosphotransfer from phospho-DegS to DegU in vitro. Moreover, DegU binds the promoter region of flgB with a high affinity, whereas DegU binds to the promoter regions of other DegU-regulated genes with a low affinity and in a DegS-dependent manner. Taken together, we propose that a gradual increase in DegU and phospho-DegU levels induces a transition from growth as motile cells to growth as sessile, biofilm-forming cells.
在自然环境中,细菌在以游动细胞形式生长和以固着、形成生物膜的细胞形式生长之间波动。然而,枯草芽孢杆菌中控制这两种生长模式之间转变的机制尚未完全了解。degU突变既阻止了鞭毛形成也阻止了生物膜形成,这表明其中一种转变机制可能是DegU活性调控的基础。DegU调控基因的表达谱有所不同;鞭毛基因和几个未知基因在指数生长期表达,而其他基因在稳定期被诱导表达。degS突变不影响flgB-sigD操纵子的转录,但降低了依赖σ(D)的鞭毛基因、degU和其他DegU调控基因的转录。此外,degQ突变不影响鞭毛基因的转录,但降低了其他DegU调控基因的转录。纯化的DegQ蛋白在体外刺激了磷酸从磷酸化的DegS转移到DegU。而且,DegU以高亲和力结合flgB的启动子区域,而DegU以低亲和力并以DegS依赖的方式结合其他DegU调控基因的启动子区域。综上所述,我们提出DegU和磷酸化DegU水平的逐渐增加诱导了从以游动细胞形式生长到以固着、形成生物膜的细胞形式生长的转变。