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Straight and rigid flagellar hook made by insertion of the FlgG specific sequence into FlgE

机译:通过将FlgG特定序列插入FlgE中制成的直而硬的鞭毛钩

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摘要

The bacterial flagellar hook connects the helical flagellar filament to the rotary motor at its base. Bending flexibility of the hook allows the helical filaments to form a bundle behind the cell body to produce thrust for bacterial motility. The hook protein FlgE shows considerable sequence and structural similarities to the distal rod protein FlgG; however, the hook is supercoiled and flexible as a universal joint whereas the rod is straight and rigid as a drive shaft. A short FlgG specific sequence (GSS) has been postulated to confer the rigidity on the FlgG rod, and insertion of GSS at the position between Phe-42 and Ala-43 of FlgE actually made the hook straight. However, it remains unclear whether inserted GSS confers the rigidity as well. Here, we provide evidence that insertion of GSS makes the hook much more rigid. The GSS insertion inhibited flagellar bundle formation behind the cell body, thereby reducing motility. This indicates that the GSS insertion markedly reduced the bending flexibility of the hook. Therefore, we propose that the inserted GSS makes axial packing interactions of FlgE subunits much tighter in the hook to suppress axial compression and extension of the protofilaments required for bending flexibility.
机译:细菌鞭毛钩将螺旋鞭毛细丝连接至位于其底部的旋转电机。钩子的弯曲柔韧性允许螺旋状细丝在细胞体后形成束,从而产生推动细菌运动的推力。钩蛋白FlgE与远端杆蛋白FlgG表现出相当的序列和结构相似性。然而,钩子是超螺旋的,并且作为万向节具有挠性,而杆则是直的并且是刚性的,作为驱动轴。假定有一个较短的FlgG特定序列(GSS)以赋予FlgG杆以刚性,并且在FlgE的Phe-42和Ala-43之间插入GSS实际上会使钩子变直。但是,尚不清楚插入的GSS是否也具有刚性。在这里,我们提供了证据,表明GSS的插入使挂钩更加坚固。 GSS插入抑制了细胞体后面的鞭毛束形成,从而降低了运动能力。这表明,GSS的插入显着降低了挂钩的弯曲柔韧性。因此,我们建议插入的GSS使FlgE亚基在钩中的轴向填充相互作用更紧密,以抑制轴向压缩和弯曲柔性所需的原丝延伸。

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