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杆到钩的转变是由 L 环依赖性杆支架去除催化的,这对于细胞外鞭毛的组装是至关重要的。

Rod-to-hook transition for extracellular flagellum assembly is catalyzed by the L-ring-dependent rod scaffold removal.

机构信息

Department of Biology, University of Utah, Salt Lake City, Utah, USA.

Department of Biology, University of Utah, Salt Lake City, Utah, USA

出版信息

J Bacteriol. 2014 Jul;196(13):2387-95. doi: 10.1128/JB.01580-14. Epub 2014 Apr 18.

Abstract

In Salmonella, the rod substructure of the flagellum is a periplasmic driveshaft that couples the torque generated by the basal body motor to the extracellular hook and filament. The rod subunits self-assemble, spanning the periplasmic space and stopping at the outer membrane when a mature length of ~22 nm is reached. Assembly of the extracellular hook and filament follow rod completion. Hook initiation requires that a pore forms in the outer membrane and that the rod-capping protein, FlgJ, dislodges from the tip of the distal rod and is replaced with the hook-capping protein, FlgD. Approximately 26 FlgH subunits form the L-ring around the distal rod that creates the pore through which the growing flagellum will elongate from the cell body. The function of the L-ring in the mature flagellum is also thought to act as a bushing for the rotating rod. Work presented here demonstrates that, in addition to outer membrane pore formation, L-ring formation catalyzes the removal of the FlgJ rod cap. Rod cap removal allows the hook cap to assemble at the rod tip and results in the transition from rod completion in the periplasm to extracellular hook polymerization. By coupling the rod-to-hook switch to outer membrane penetration, FlgH ensures that hook and filament polymerization is initiated at the appropriate spatial and temporal point in flagellar biosynthesis.

摘要

在沙门氏菌中,鞭毛的杆状亚结构是一种周质传动轴,它将基体马达产生的扭矩传递到细胞外的钩状结构和鞭毛丝上。杆状亚基自行组装,跨越周质空间,当达到成熟的~22nm 长度时,在细胞膜停止。细胞外钩状结构和鞭毛丝的组装紧随杆状结构之后。钩状结构的起始需要在细胞膜上形成一个孔,并且杆帽蛋白 FlgJ 从远端杆的顶端脱离,并被钩帽蛋白 FlgD 取代。大约 26 个 FlgH 亚基形成围绕远端杆的 L 环,该 L 环在生长的鞭毛从细胞体延伸时创建一个孔。成熟鞭毛中 L 环的功能也被认为是作为旋转杆的衬套。这里介绍的工作表明,除了形成外膜孔之外,L 环的形成还催化 FlgJ 杆帽的去除。杆帽的去除允许钩帽在杆的顶端组装,从而导致从周质中的杆状完成到细胞外钩状聚合的转变。通过将杆状到钩状的转换与外膜穿透偶联,FlgH 确保钩状结构和鞭毛丝聚合在鞭毛生物合成的适当空间和时间点开始。

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