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Conformational dynamics of the Na+/K+-ATPase probed by voltage clamp fluorometry

机译:电压钳荧光法检测Na + / K + -ATPase的构象动力学

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摘要

The method of voltage clamp fluorometry combined with site-directed fluorescence labeling was used to detect local protein motions of the fully active Na+/K+-ATPase in real time under physiological conditions. Because helix M5 extends from the cytoplasmic site of ATP hydrolysis into the cation binding region, we chose the extracellular M5–M6 loop of the sheep α1-subunit for the insertion of cysteine residues to identify reporter positions for conformational rearrangements during the catalytic cycle. After expression of the single cysteine mutants in Xenopus oocytes and covalent attachment of tetramethylrhodamine-6-maleimide, only mutant N790C reported molecular rearrangements of the M5–M6 loop by showing large, ouabain-sensitive fluorescence changes (≈5%) on addition of extracellular K+. When the enzyme was subjected to voltage jumps under Na+/Na+-exchange conditions, we observed fluorescence changes that directly correlated to transient charge movements originating from the E1P–E2P transition of the transport cycle. The voltage jump-induced fluorescence changes and transient currents were abolished after replacement of Na+ by tetraethylammonium or on addition of ouabain, showing that conformational flexibility is impaired under these conditions. Voltage-dependent fluorescence changes could also be observed in the presence of subsaturating K+ concentrations. This allowed to monitor the time course of voltage-dependent relaxations into a new stationary distribution of states under turnover conditions, showing the acceleration of relaxation kinetics with increasing K+ concentrations. As a result, the stationary distribution between E1 and E2 states and voltage-dependent relaxation times can be determined at any time and membrane potential under Na+/Na+ exchange as well as Na+/K+ turnover conditions.
机译:电压钳荧光法结合定点荧光标记法用于在生理条件下实时检测全活性Na + / K + -ATPase的局部蛋白运动条件。因为螺旋M5从ATP水解的胞质位点延伸到阳离子结合区,所以我们选择了绵羊α1亚基的细胞外M5–M6环来插入半胱氨酸残基,以鉴定在催化循环中构象重排的报道分子位置。在非洲爪蟾卵母细胞中表达单个半胱氨酸突变体和四甲基罗丹明-6-马来酰亚胺共价结合后,只有突变体N790C通过显示大的哇巴因敏感荧光变化(≈5%)报告了M5–M6环的分子重排(添加了细胞外) K + 。当酶在Na + / Na + 交换条件下经受电压跃变时,我们观察到荧光变化直接与源自E1P–E2P跃迁的瞬时电荷运动相关运输周期。在用四乙铵代替Na + 或加入哇巴因后,电压跳跃引起的荧光变化和瞬态电流均被消除,表明在这些条件下构象柔性受到损害。在亚饱和K + 浓度存在的情况下,还可以观察到电压依赖性荧光变化。这可以监测在周转条件下电压依赖性弛豫进入状态新的稳态分布的时间过程,显示随K + 浓度增加弛豫动力学的加速。结果,可以随时确定E1和E2状态之间的平稳分布以及与电压相关的弛豫时间,并且还可以确定在Na + / Na + 交换下的膜电位Na + / K + 周转条件。

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