Mouslim Chakib, Hughes Kelly T
Department of Biology, University of Utah, Salt Lake City, Utah, United States of America.
PLoS Pathog. 2014 Mar 6;10(3):e1003987. doi: 10.1371/journal.ppat.1003987. eCollection 2014 Mar.
The flagellar regulon controls Salmonella biofilm formation, virulence gene expression and the production of the major surface antigen present on the cell surface: flagellin. At the top of a flagellar regulatory hierarchy is the master operon, flhDC, which encodes the FlhD₄C₂ transcriptional complex required for the expression of flagellar, chemotaxis and Salmonella pathogenicity island 1 (Spi1) genes. Of six potential transcriptional start-sites within the flhDC promoter region, only two, P1(flhDC) and P5(flhDC), were functional in a wild-type background, while P6(flhDC) was functional in the absence of CRP. These promoters are transcribed differentially to control either flagellar or Spi1 virulent gene expression at different stages of cell growth. Transcription from P1(flhDC) initiates flagellar assembly and a negative autoregulatory loop through FlhD₄C₂-dependent transcription of the rflM gene, which encodes a repressor of flhDC transcription. Transcription from P1(flhDC) also initiates transcription of the Spi1 regulatory gene, hilD, whose product, in addition to activating Spi1 genes, also activates transcription of the flhDC P5 promoter later in the cell growth phase. The regulators of flhDC transcription (RcsB, LrhA, RflM, HilD, SlyA and RtsB) also exert their control at different stages of the cell growth phase and are also subjected to cell growth phase control. This dynamic of flhDC transcription separates the roles of FlhD₄C₂ transcriptional activation into an early cell growth phase role for flagellar production from a late cell growth phase role in virulence gene expression.
鞭毛调控子控制沙门氏菌生物膜形成、毒力基因表达以及细胞表面主要表面抗原鞭毛蛋白的产生。在鞭毛调控层级的顶端是主操纵子flhDC,它编码鞭毛、趋化性和沙门氏菌致病岛1(Spi1)基因表达所需的FlhD₄C₂转录复合体。在flhDC启动子区域的六个潜在转录起始位点中,只有两个,即P1(flhDC)和P5(flhDC),在野生型背景下具有功能,而P6(flhDC)在没有CRP的情况下具有功能。这些启动子以不同方式转录,以在细胞生长的不同阶段控制鞭毛或Spi1毒力基因的表达。来自P1(flhDC)的转录启动鞭毛组装以及通过rflM基因的FlhD₄C₂依赖性转录形成的负自调控环,rflM基因编码flhDC转录的阻遏物。来自P1(flhDC)的转录还启动Spi1调控基因hilD的转录,其产物除了激活Spi1基因外,还在细胞生长后期激活flhDC P5启动子的转录。flhDC转录的调控因子(RcsB、LrhA、RflM、HilD、SlyA和RtsB)也在细胞生长阶段的不同时期发挥控制作用,并且也受到细胞生长阶段的调控。flhDC转录的这种动态变化将FlhD₄C₂转录激活的作用分为细胞生长早期阶段产生鞭毛的作用和细胞生长后期阶段毒力基因表达的作用。