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首页> 外文期刊>Journal of Molecular Biology >Vibrio alginolyticus mutants resistant to phenamil, a specific inhibitor of the sodium-driven flagellar motor
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Vibrio alginolyticus mutants resistant to phenamil, a specific inhibitor of the sodium-driven flagellar motor

机译:耐溶藻弧菌突变株对苯那米钠具有抗性

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The polar flagella of Vibrio alginolyticus are driven by sodium motive force and those motors are specifically and strongly inhibited by phenamil, an amiloride analog that is thought to interact with a sodium channel of the flagellar motor. To study the sodium ion coupling site, we isolated motility mutants resistant to phenamil and named the phenotype Mpa(r) for motility resistant to phenamil. The motility of the wild-type (Mpa(s)) was inhibited by 50 microM phenamil, whereas Mpa(r) strains were still motile in the presence of 200 microM phenamil. The Ki value for phenamil in the Mpa(r) strain was estimated to be five times larger than that in the Mpa(s) strain. However, the sensitivities to amiloride or benzamil, another amiloride analog, were not distinctly changed in the Mpa(r) strain. The rotation rate of the wild-type Na+-driven motor fluctuates greatly in the presence of phenamil, which can be explained in terms of a relatively slow dissociation rate of phenamil from the motor. We therefore studied the stability of the rotation of the Mpa(r) and Mpa(s) motors by phenamil. The speed fluctuations of the Mpa(r) motors were distinctly reduced relative to the Mpas motors. The steadier rotation of the Mpa(r) motors can be explained by an increase in the phenamil dissociation rate from a sodium channel of the motor, which suggests that a phenamil-specific binding site of the motor is mutated in the Mpa(r) strain.
机译:溶藻弧菌的极鞭毛由钠动力驱动,而苯那米尔(一种被认为与鞭毛马达的钠通道相互作用的阿米洛利类似物)特异且强烈地抑制了这些马达。为了研究钠离子偶联位点,我们分离了对苯那非有抗性的运动突变体,并命名为表型Mpa(r)来对苯那非有抗性。野生型(Mpa(s))的运动受到50 microM苯那非的抑制,而Mpa(r)菌株在存在200 microM苯那非的情况下仍能运动。据估计,Mpa(r)菌株中苯那米尔的Ki值是Mpa(s)菌株中的苯甲酰胺的Ki值的五倍。但是,对阿米洛利或另一种阿米洛利类似物苯扎米尔的敏感性在Mpa(r)菌株中并没有明显改变。野生型Na +驱动的电动机的旋转速度在存在苯那非的情况下极大地波动,这可以用苯那非从电动机中解离的速度相对较慢来解释。因此,我们研究了苯那非的Mpa(r)和Mpa(s)电动机的旋转稳定性。相对于Mpas电动机,Mpa(r)电动机的速度波动明显减少。 Mpa(r)电动机的稳定旋转可以通过电动机的钠通道的苯酚的解离速率增加来解释,这表明电动机的苯甲酰胺特异性结合位点在Mpa(r)菌株中发生了突变。 。

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