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Coupled K+–Water Flux through the HERG Potassium Channel Measured by an Osmotic Pulse Method

机译:通过渗透脉冲法测量的通过HERG钾离子通道耦合的K + –水通量

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摘要

The streaming potential (V stream) is a signature feature of ion channels in which permeating ions and water molecules move in a single file. V stream provides a quantitative measure of the ion and water flux (the water–ion coupling ratio), the knowledge of which is a prerequisite for elucidating the mechanisms of ion permeation. We have developed a method to measure V stream with the whole-cell patch-clamp configuration. A HEK293 cell stably expressing the HERG potassium channel was voltage clamped and exposed to hyperosmotic solutions for short periods of time (<1 s) by an ultrafast solution switching system (the osmotic pulse [quick jump-and-away] method). The reversal potentials were monitored by a series of voltage ramps before, during, and after the osmotic pulse. The shifts of the reversal potentials immediately after the osmotic jump gave V stream. In symmetrical K+ solutions (10 mM), the V streams measured at different osmolalities showed a linear relationship with a slope of −0.7 mV/ΔOsm, from which the water–ion coupling ratio (n, the ratio of the flux of water to the flux of cations; Levitt, D.G., S.R. Elias, and J.M. Hautman. 1978. Biochim. Biophys. Acta. 512:436–451) was calculated to be 1.4. In symmetrical 100 mM K+ solutions, the coupling ratio was decreased significantly (n = 0.9), indicating that the permeation process through states with increased ion occupancy became significant. We presented a diagrammatic representation linking the water–ion coupling ratio to the mode of ion permeation and suggested that the coupling ratio of one may represent the least hydrated ion flux in the single-file pore.
机译:流势(V流)是离子通道的标志性特征,其中渗透离子和水分子在单个文件中移动。 V流提供了离子和水通量(水-离子耦合比)的定量度量,其知识是阐明离子渗透机理的前提。我们已经开发出一种使用全细胞膜片钳配置测量V流的方法。将电压稳定表达的HERG钾通道的HEK293细胞进行电压钳制,并通过超快速溶液切换系统(渗透脉冲[快速跳开]方法)在短时间内(<1 s)暴露于高渗溶液中。通过在渗透脉冲之前,期间和之后的一系列电压斜坡来监视反转电位。渗透跃变后,反转电位的变化立即产生了V流。在对称的K + 溶液(10 mM)中,在不同摩尔渗透压浓度下测得的V流显示出与-0.7 mV /ΔOsm的斜率呈线性关系,从该斜率可以看出水离子耦合比(n,水的通量与阳离子的通量之比; Levitt,DG,SR Elias和JM Hautman。1978. Biochim。Biophys。Acta。512:436-451)经计算为1.4。在对称的100 mM K + 溶液中,偶联率显着降低(n = 0.9),这表明通过具有较高离子占有率的状态的渗透过程变得显着。我们给出了将水-离子耦合比与离子渗透模式联系起来的示意图,并提出了一个耦合比可能代表单孔中水合最小的离子通量。

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