Shah D S, Perehinec T, Stevens S M, Aizawa S I, Sockett R E
Microbiology Unit, Biochemistry Department, University of Oxford, UK.
J Bacteriol. 2000 Sep;182(18):5218-24. doi: 10.1128/JB.182.18.5218-5224.2000.
Flagellar motility in Rhodobacter sphaeroides is notably different from that in other bacteria. R. sphaeroides moves in a series of runs and stops produced by the intermittent rotation of the flagellar motor. R. sphaeroides has a single, plain filament whose conformation changes according to flagellar motor activity. Conformations adopted during swimming include coiled, helical, and apparently straight forms. This range of morphological transitions is larger than that in other bacteria, where filaments alternate between left- and right-handed helical forms. The polymorphic ability of isolated R. sphaeroides filaments was tested in vitro by varying pH and ionic strength. The isolated filaments could form open-coiled, straight, normal, or curly conformations. The range of transitions made by the R. sphaeroides filament differs from that reported for Salmonella enterica serovar Typhimurium. The sequence of the R. sphaeroides fliC gene, which encodes the flagellin protein, was determined. The gene appears to be controlled by a sigma(28)-dependent promoter. It encodes a predicted peptide of 493 amino acids. Serovar Typhimurium mutants with altered polymorphic ability usually have amino acid changes at the terminal portions of flagellin or a deletion in the central region. There are no obvious major differences in the central regions to explain the difference in polymorphic ability. In serovar Typhimurium filaments, the termini of flagellin monomers have a coiled-coil conformation. The termini of R. sphaeroides flagellin are predicted to have a lower probability of coiled coils than are those of serovar Typhimurium flagellin. This may be one reason for the differences in polymorphic ability between the two filaments.
球形红杆菌的鞭毛运动明显不同于其他细菌。球形红杆菌通过鞭毛马达的间歇性旋转进行一系列的游动和停顿。球形红杆菌有一根单一的、简单的丝状体,其构象根据鞭毛马达的活动而变化。游动时所采用的构象包括盘绕状、螺旋状和明显的直线状。这种形态转变的范围比其他细菌更大,在其他细菌中,丝状体在左手螺旋和右手螺旋形式之间交替。通过改变pH值和离子强度,在体外测试了分离出的球形红杆菌丝状体的多态性能力。分离出的丝状体可以形成开放盘绕状、直线状、正常状或卷曲状构象。球形红杆菌丝状体的转变范围与鼠伤寒沙门氏菌报道的不同。确定了编码鞭毛蛋白的球形红杆菌fliC基因的序列。该基因似乎受一个依赖σ(28)的启动子控制。它编码一个预测的493个氨基酸的肽。多态性能力改变的鼠伤寒沙门氏菌突变体通常在鞭毛蛋白的末端部分有氨基酸变化或在中央区域有缺失。中央区域没有明显的主要差异来解释多态性能力的差异。在鼠伤寒沙门氏菌丝状体中,鞭毛蛋白单体的末端具有卷曲螺旋构象。预测球形红杆菌鞭毛蛋白的末端形成卷曲螺旋的可能性比鼠伤寒沙门氏菌鞭毛蛋白的末端低。这可能是两种丝状体多态性能力不同的一个原因。