首页> 美国卫生研究院文献>Journal of Bacteriology >Contribution of Many Charged Residues at the Stator-Rotor Interface of the Na+-Driven Flagellar Motor to Torque Generation in Vibrio alginolyticus
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Contribution of Many Charged Residues at the Stator-Rotor Interface of the Na+-Driven Flagellar Motor to Torque Generation in Vibrio alginolyticus

机译:Na +驱动鞭毛马达的定子-转子界面上的许多带电残留物对溶藻弧菌中的扭矩产生有贡献。

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摘要

In torque generation by the bacterial flagellar motor, it has been suggested that electrostatic interactions between charged residues of MotA and FliG at the rotor-stator interface are important. However, the actual role(s) of those charged residues has not yet been clarified. In this study, we systematically made mutants of Vibrio alginolyticus whose charged residues of PomA (MotA homologue) and FliG were replaced by uncharged or charge-reversed residues and characterized the motilities of those mutants. We found that the members of a group of charged residues, 7 in PomA and 6 in FliG, collectively participate in torque generation of the Na+-driven flagellar motor in Vibrio. An additional specific interaction between PomA-E97 and FliG-K284 is critical for proper performance of the Vibrio motor. Our results also reveal that more charged residues are involved in the PomA-FliG interactions in the Vibrio Na+-driven motor than in the MotA-FliG interactions in the H+-driven one. This suggests that a larger number of conserved charged residues at the PomA-FliG interface contributes to the robustness of the Vibrio motor against mutations. The interaction surfaces of the stator and rotor of the Na+-driven motor seem to be more complex than those previously proposed in the H+-driven motor.
机译:在细菌鞭毛马达产生的转矩中,已经提出在转子-定子界面上的MotA和FliG带电残基之间的静电相互作用很重要。但是,这些带电荷残基的实际作用尚未阐明。在这项研究中,我们系统地制造了溶藻弧菌突变体,其带电残基PomA(MotA同源物)和FliG被不带电或带电荷的残基取代,并表征了这些突变体的功能性。我们发现,一组带电荷的残基成员(PomA中的7个残基和FliG中的6个残基)共同参与了由弧菌中Na + 驱动的鞭毛马达的转矩产生。 PomA-E97和FliG-K284之间的其他特定相互作用对于Vibrio电机的正常性能至关重要。我们的结果还显示,与Na + -中的MotA-FliG相互作用相比,弧菌Na + 驱动的电机中PomA-FliG相互作用涉及的带电荷残基更多。驱动一个。这表明PomA-FliG界面上的大量保守带电残基有助于弧菌马达抵抗突变的稳健性。 Na + 驱动的电动机的定子和转子的相互作用表面似乎比先前在H + 驱动的电动机中提出的相互作用表面更为复杂。

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