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首页> 外文期刊>Molecular Microbiology >Sodium-powered stators of the bacterial flagellar motor can generate torque in the presence of phenamil with mutations near the peptidoglycan-binding region
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Sodium-powered stators of the bacterial flagellar motor can generate torque in the presence of phenamil with mutations near the peptidoglycan-binding region

机译:细菌鞭毛电机的钠动力定子可以在肽蛋白质结合区域附近的突变存在下产生扭矩

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摘要

The bacterial flagellar motor powers the rotation that propels the swimming bacteria. Rotational torque is generated by harnessing the flow of ions through ion channels known as stators which couple the energy from the ion gradient across the inner membrane to rotation of the rotor. Here, we used error-prone PCR to introduce single point mutations into the sodium-powered Vibrio alginolyticus/Escherichia coli chimeric stator PotB and selected for motors that exhibited motility in the presence of the sodium-channel inhibitor phenamil. We found single mutations that enable motility under phenamil occurred at two sites: (i) the transmembrane domain of PotB, corresponding to the TM region of the PomB stator from V. alginolyticus and (ii) near the peptidoglycan binding region that corresponds to the C-terminal region of the MotB stator from E. coli. Single cell rotation assays confirmed that individual flagellar motors could rotate in up to 100 mu M phenamil. Using phylogenetic logistic regression, we found correlation between natural residue variation and ion source at positions corresponding to PotB F22Y, but not at other sites. Our results demonstrate that it is not only the pore region of the stator that moderates motility in the presence of ion-channel blockers.
机译:细菌鞭毛电机能够推动游泳细菌的旋转。通过通过称为定子的离子流动利用离子的流动来产生旋转扭矩,该定子将能量从离子梯度耦合到转子的旋转。在此,我们使用错误易于PCR将单点突变引入钠动力的vibrio alginolyticus / eScherichia Coli Chimicus potab中,并选择用于在钠通道抑制剂苯甲酰苯胺存在下表现出活性的电动机。我们发现单一突变在两个位点发生Phenamil下的运动性:(i)Potb的跨膜结构域,对应于来自V.Alginolyticus和(II)附近对应于C的肽聚糖结合区附近的POMP定子的TM区域。来自大肠杆菌的MOTB定子的终端区域。单细胞旋转测定证实,单个鞭毛电机可以旋转至100μm的phenamil。使用系统发育逻辑回归,我们发现了对应于Potb F22Y的位置的天然残留物变化和离子源之间的相关性,但不在其他地点。我们的结果表明,它不仅是定子的孔区域,可在离子通道阻挡器存在下调节运动性。

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