Ito Masahiro, Hicks David B, Henkin Tina M, Guffanti Arthur A, Powers Benjamin D, Zvi Lior, Uematsu Katsuyuki, Krulwich Terry A
Faculty of Life Sciences, Toyo University, Oura-gun, Gunma 374-0193, Japan.
Mol Microbiol. 2004 Aug;53(4):1035-49. doi: 10.1111/j.1365-2958.2004.04173.x.
The stator-force generator that drives Na+-dependent motility in alkaliphilic Bacillus pseudofirmus OF4 is identified here as MotPS, MotAB-like proteins with genes that are downstream of the ccpA gene, which encodes a major regulator of carbon metabolism. B. pseudofirmus OF4 was only motile at pH values above 8. Disruption of motPS resulted in a non-motile phenotype, and motility was restored by transformation with a multicopy plasmid containing the motPS genes. Purified and reconstituted MotPS from B. pseudofirmus OF4 catalysed amiloride analogue-sensitive Na+ translocation. In contrast to B. pseudofirmus, Bacillus subtilis contains both MotAB and MotPS systems. The role of the motPS genes from B. subtilis in several motility-based behaviours was tested in isogenic strains with intact motAB and motPS loci, only one of the two mot systems or neither mot system. B. subtilis MotPS (BsMotPS) supported Na+-stimulated motility, chemotaxis on soft agar surfaces and biofilm formation, especially after selection of an up-motile variant. BsMotPS also supported motility in agar soft plugs immersed in liquid; motility was completely inhibited by an amiloride analogue. BsMotPS did not support surfactin-dependent swarming on higher concentration agar surfaces. These results indicate that BsMotPS contributes to biofilm formation and motility on soft agar, but not to swarming, in laboratory strains of B. subtilis in which MotAB is the dominant stator-force generator. BsMotPS could potentially be dominant for motility in B. subtilis variants that arise in particular niches.
驱动嗜碱类芽孢杆菌OF4中钠依赖性运动的定子力发生器在此被鉴定为MotPS,它是一种MotAB样蛋白,其基因位于ccpA基因下游,ccpA基因编码碳代谢的主要调节因子。类芽孢杆菌OF4仅在pH值高于8时具有运动性。MotPS的破坏导致非运动表型,通过用含有MotPS基因的多拷贝质粒转化可恢复运动性。从类芽孢杆菌OF4中纯化并重组的MotPS催化了氨氯吡脒类似物敏感的钠转运。与类芽孢杆菌不同,枯草芽孢杆菌同时含有MotAB和MotPS系统。在具有完整MotAB和MotPS基因座、两个Mot系统中只有一个或两个Mot系统都没有的同基因菌株中,测试了枯草芽孢杆菌MotPS基因在几种基于运动的行为中的作用。枯草芽孢杆菌MotPS(BsMotPS)支持钠刺激的运动性、在软琼脂表面的趋化性和生物膜形成,特别是在选择向上运动的变体之后。BsMotPS还支持浸没在液体中的琼脂软塞中的运动性;氨氯吡脒类似物完全抑制了运动性。BsMotPS不支持在较高浓度琼脂表面上的表面活性素依赖性群体游动。这些结果表明,在MotAB是主要定子力发生器的枯草芽孢杆菌实验室菌株中,BsMotPS有助于生物膜形成和在软琼脂上的运动性,但对群体游动没有贡献。在特定生态位出现的枯草芽孢杆菌变体中,BsMotPS可能在运动性方面占主导地位。