Department of Oral Biology, the State University of New York at Buffalo, Buffalo, New York 14214-8031, USA.
J Bacteriol. 2010 May;192(10):2596-603. doi: 10.1128/JB.01502-09. Epub 2010 Mar 19.
The expression of flagellin genes in most bacteria is typically regulated by the flagellum-specific sigma(28) factor FliA, and an anti-sigma(28) factor, FlgM. However, the regulatory hierarchy in several bacteria that have multiple flagellins is more complex. In these bacteria, the flagellin genes are often transcribed by at least two different sigma factors. The flagellar filament in spirochetes consists of one to three FlaB core proteins and at least one FlaA sheath protein. Here, the genetically amenable bacterium Brachyspira hyodysenteriae was used as a model spirochete to investigate the regulation of its four flagellin genes, flaA, flaB1, flaB2, and flaB3. We found that the flaB1 and flaB2 genes are regulated by sigma(28), whereas the flaA and flaB3 genes are controlled by sigma(70). The analysis of a flagellar motor switch fliG mutant further supported this proposition; in the mutant, the transcription of flaB1 and flaB2 was inhibited, but that of flaA and flaB3 was not. In addition, the continued expression of flaA and flaB3 in the mutant resulted in the formation of incomplete flagellar filaments that were hollow tubes and consisted primarily of FlaA. Finally, our recent studies have shown that each flagellin unit contributes to the stiffness of the periplasmic flagella, and this stiffness directly correlates with motility. The regulatory mechanism identified here should allow spirochetes to change the relative ratio of these flagellin proteins and, concomitantly, vary the stiffness of their flagellar filament.
大多数细菌中鞭毛基因的表达通常受鞭毛特异性 sigma(28)因子 FliA 和反 sigma(28)因子 FlgM 调控。然而,在具有多个鞭毛蛋白的几种细菌中,调控层次更为复杂。在这些细菌中,鞭毛基因通常由至少两种不同的 sigma 因子转录。螺旋体的鞭毛丝由一到三个 FlaB 核心蛋白和至少一个 FlaA 鞘蛋白组成。在这里,遗传上可操作的细菌布氏疏螺旋体被用作模式螺旋体来研究其四个鞭毛蛋白基因 flaA、flaB1、flaB2 和 flaB3 的调控。我们发现 flaB1 和 flaB2 基因受 sigma(28)调控,而 flaA 和 flaB3 基因受 sigma(70)调控。鞭毛马达开关 fliG 突变体的分析进一步支持了这一观点;在突变体中,flaB1 和 flaB2 的转录受到抑制,但 flaA 和 flaB3 的转录不受抑制。此外,突变体中 flaA 和 flaB3 的持续表达导致不完全鞭毛丝的形成,这些鞭毛丝是空心管,主要由 FlaA 组成。最后,我们最近的研究表明,每个鞭毛蛋白单元都有助于周质鞭毛的刚度,而这种刚度与运动性直接相关。这里确定的调控机制应该使螺旋体能够改变这些鞭毛蛋白的相对比例,并相应地改变其鞭毛丝的刚度。