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Conformational change in the periplamic region of the flagellar stator coupled with the assembly around the rotor

机译:鞭毛定子周围区的构象变化与转子周围的组件耦合。

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摘要

The torque of the bacterial flagellum is generated by the rotor–stator interaction coupled with the ion flow through the channel in the stator. Anchoring the stator unit to the peptidoglycan layer with proper orientation around the rotor is believed to be essential for smooth rotation of the flagellar motor. The stator unit of the sodium-driven flagellar motor of Vibrio is composed of PomA and PomB, and is thought to be fixed to the peptidoglycan layer and the T-ring by the C-terminal periplasmic region of PomB. Here, we report the crystal structure of a C-terminal fragment of PomB (PomBC) at 2.0-Å resolution, and the structure suggests a conformational change in the N-terminal region of PomBC for anchoring the stator. On the basis of the structure, we designed double-Cys replaced mutants of PomB for in vivo disulfide cross-linking experiments and examined their motility. The motility can be controlled reproducibly by reducing reagent. The results of these experiments suggest that the N-terminal disordered region (121–153) and following the N-terminal two-thirds of α1(154-164) in PomBC changes its conformation to form a functional stator around the rotor. The cross-linking did not affect the localization of the stator nor the ion conductivity, suggesting that the conformational change occurs in the final step of the stator assembly around the rotor.
机译:细菌鞭毛的扭矩是由转子-定子相互作用以及离子流通过定子中的通道而产生的。定子单元以适当的方向围绕转子固定在肽聚糖层上被认为对鞭毛马达的平稳旋转至关重要。弧菌钠驱动鞭​​毛马达的定子单元由PomA和PomB组成,并被认为通过PomB的C端周质区域固定在肽聚糖层和T环上。在这里,我们报道了PomB(PomBC)C端片段的晶体结构,其分辨率为2.0-Å,该结构表明PomBC的N端区域的构象变化可用于固定定子。根据结构,我们设计了双Cys取代的PomB突变体,用于体内二硫键交联实验,并检查了它们的运动性。活力可以通过还原试剂来控制。这些实验的结果表明,PomBC中的N端无序区(121-153)和紧随其后的α1的三分之二的α1(154-164)会改变其构象,从而在转子周围形成功能性定子。交联既不影响定子的定位,也不影响离子电导率,这表明构象变化发生在定子组件围绕转子的最后一步中。

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