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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Functional role of a conserved aspartic acid residue in the motor of the Na(+)-driven flagellum from Vibrio cholerae.
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Functional role of a conserved aspartic acid residue in the motor of the Na(+)-driven flagellum from Vibrio cholerae.

机译:在霍乱弧菌的Na(+)驱动鞭毛的马达中,保守的天冬氨酸残基的功能作用。

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摘要

The flagellar motor consists of a rotor and a stator and couples the flux of cations (H(+) or Na(+)) to the generation of the torque necessary to drive flagellum rotation. The inner membrane proteins PomA and PomB are stator components of the Na(+)-driven flagellar motor from Vibrio cholerae. Affinity-tagged variants of PomA and PomB were co-expressed in trans in the non-motile V. cholerae pomAB deletion strain to study the role of the conserved D23 in the transmembrane helix of PomB. At pH 9, the D23E variant restored motility to 100% of that observed with wild type PomB, whereas the D23N variant resulted in a non-motile phenotype, indicating that a carboxylic group at position 23 in PomB is important for flagellum rotation. Motility tests at decreasing pH revealed a pronounced decline of flagellar function with a motor complex containing the PomB-D23E variant. It is suggested that the protonation state of the glutamate residue at position 23 determines the performance of the flagellar motor by altering the affinity of Na(+) to PomB. The conserved aspartate residue in the transmembrane helix of PomB and its H(+)-dependent homologs might act as a ligand for the coupling cation in the flagellar motor.
机译:鞭毛马达由转子和定子组成,并将阳离子通量(H(+)或Na(+))与驱动鞭毛旋转所需的扭矩耦合。内膜蛋白PomA和PomB是霍乱弧菌的Na(+)驱动鞭毛马达的定子组件。 PomA和PomB的亲和标签变体在非运动型霍乱弧菌pomAB缺失菌株中反式共表达,以研究保守的D23在PomB跨膜螺旋中的作用。在pH 9时,D23E变体将活力恢复到了野生型PomB观察到的活力的100%,而D23N变体导致了非运动型的表型,表明PomB中23位的羧基对于鞭毛旋转很重要。在降低的pH值下进行的运动测试表明,含有PomB-D23E变体的运动复合物的鞭毛功能显着下降。建议在位置23的谷氨酸残基的质子化状态通过改变Na(+)对PomB的亲和力来决定鞭毛运动的性能。 PomB跨膜螺旋中的保守天冬氨酸残基及其依赖H(+)的同源物可能充当鞭毛马达中耦合阳离子的配体。

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