Jenal U, Shapiro L
Department of Developmenal Biology, Stanford University School of Medicine, Stanford, CA 94305-5427, USA.
EMBO J. 1996 May 15;15(10):2393-406.
Flagellar biogenesis and release are developmental events tightly coupled to the cell cycle of Caulobacter crescentus. A single flagellum is assembled at the swarmer pole of the predivisional cell and is released later in the cell cycle. Here we show that the MS-ring monomer FliF, a central motor component that anchors the flagellum in the cell membrane, is synthesized only in the predivisional cell and is integrated into the membrane at the incipient swarmer cell pole, where it initiates flagellar assembly. FliF is proteolytically turned over during swarmer-to-stalked cell differentiation, coinciding with the loss of the flagellum, suggesting that its degradation is coupled to flagellar release. The membrane topology of FliF was determined and a region of the cytoplasmic C-terminal domain was shown to be required for the interaction with a component of the motor switch. The very C-terminal end of FliF contains a turnover determinant, required for the cell cycle-dependent degradation of the MS-ring. The cell cycle-dependent proteolysis of FliF and the targeting of FliF to the swarmer pole together contribute to the asymmetric localization of the MS-ring in the predivisional cell.
鞭毛的生物发生和释放是与新月柄杆菌细胞周期紧密相关的发育事件。在分裂前细胞的游动菌极组装一根单一的鞭毛,并在细胞周期的后期释放。我们在此表明,MS环单体FliF是一种将鞭毛锚定在细胞膜中的核心运动部件,它仅在分裂前细胞中合成,并在游动菌细胞极起始处整合到膜中,在那里启动鞭毛组装。在游动菌到柄细胞分化过程中,FliF会通过蛋白水解作用更新,这与鞭毛的丧失同时发生,表明其降解与鞭毛释放相关。确定了FliF的膜拓扑结构,并表明细胞质C末端结构域的一个区域是与运动开关的一个组件相互作用所必需的。FliF的最末端C末端包含一个更新决定因素,这是MS环细胞周期依赖性降解所必需的。FliF的细胞周期依赖性蛋白水解以及FliF靶向游动菌极共同促成了MS环在分裂前细胞中的不对称定位。