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Comparative study of the ion flux pathway in stator units of proton- and sodium-driven flagellar motors

机译:质子和钠驱动鞭毛马达定子单元中离子流路径的比较研究

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摘要

Flagellar motor proteins, MotA/B and PomA/B, are essential for the motility of Escherichia coli and Vibrio alginolyticus, respectively. Those complexes work as a H+ and a Na+ channel, respectively and play important roles in torque generation as the stators of the flagellar motors. Although Asp32 of MotB and Asp24 of PomB are believed to function as ion binding site(s), the ion flux pathway from the periplasm to the cytoplasm is still unclear. Conserved residues, Ala39 of MotB and Cys31 of PomB, are located on the same sides as Asp32 of MotB and Asp24 of PomB, respectively, in a helical wheel diagram. In this study, a series of mutations were introduced into the Ala39 residue of MotB and the Cys31 residue of PomB. The motility of mutant cells were markedly decreased as the volume of the side chain increased. The loss of function due to the MotB(A39V) and PomB(L28A/C31A) mutations was suppressed by mutations of MotA(M206S) and PomA(L183F), respectively, and the increase in the volume caused by the MotB(A39V) mutation was close to the decrease in the volume caused by the MotA(M206S) mutation. These results demonstrate that Ala39 of MotB and Cys31 of PomB form part of the ion flux pathway and pore with Met206 of MotA and Leu183 of PomA in the MotA/B and PomA/B stator units, respectively.
机译:鞭毛运动蛋白MotA / B和PomA / B分别对于大肠杆菌和溶藻弧菌的运动至关重要。这些复合体分别充当H + 和Na + 通道,并在作为鞭毛马达的定子的转矩产生中发挥重要作用。尽管认为MotB的Asp32和PomB的Asp24起离子结合位点的作用,但从周质到细胞质的离子通量途径仍不清楚。保守的残基,即MotB的Ala39和PomB的Cys31,在螺旋轮图中分别与MotB的Asp32和PomB的Asp24位于同一侧。在这项研究中,一系列的突变被引入MotB的Ala39残基和PomB的Cys31残基。随着侧链体积的增加,突变细胞的运动性显着降低。 MotB(A39V)和PomB(L28A / C31A)突变导致的功能丧失分别被MotA(M206S)和PomA(L183F)突变抑制,并且MotB(A39V)突变导致体积增加接近由MotA(M206S)突变引起的体积减少。这些结果表明,在MotA / B和PomA / B定子单元中,MotB的Ala39和PomB的Cys31分别与MotA的Met206和PomA的Leu183形成离子流通道和孔的一部分。

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