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碘介导的卤化物传输的势能垒形状。

Shape of the potential energy barrier of the iodine-mediated halide transport.

作者信息

Klotz K H, Benz R

机构信息

Lehrstuhl für Biotechnologie, Theodor-Boveri-Institut (Biozentrum), Universität Würzburg, Germany.

出版信息

Biochim Biophys Acta. 1995 May 4;1235(2):378-86. doi: 10.1016/0005-2736(95)80027-d.

Abstract

Voltage-clamp experiments were performed on lipid bilayer membranes to study the voltage dependence of the iodine-mediated halide transport. Under all experimental conditions only one exponential current relaxation, apart from the capacitive spike, could be resolved up to a clamp voltage of 200 mV. The current relaxation could be described by an initial conductance, G0, the relaxation time constant, tau, and the relaxation amplitude, alpha, that is the difference between the initial current, I0, and the steady state current, I chi, divided by the steady state current. The occurrence of one single exponential relaxation suggested that one of the different transport steps involved in the carrier-mediated ion transport according to the Lüger-model is always in equilibrium. This is most probably the transport of the free carriers across the membrane. The voltage dependence of G0, tau, and of alpha were used to determine the voltage dependence of the translocation rate constants of the complexed carriers, kAS. In the case of the iodine-mediated iodide transport, G0, tau and alpha were only mediate voltage-dependent, which means the voltage dependent translocation of the complex encounters a trapezoidal barrier shape. For the iodine-mediated bromide translocation G0, tau and alpha exhibited no dependence on the applied clamp-voltage, which suggested that a square Nernst-Planck barrier limits the transport of the corresponding complex.

摘要

在脂质双分子层膜上进行电压钳实验,以研究碘介导的卤化物转运的电压依赖性。在所有实验条件下,除了电容性尖峰外,在高达200 mV的钳制电压下,只能分辨出一种指数电流弛豫。电流弛豫可以用初始电导G0、弛豫时间常数τ和弛豫幅度α来描述,弛豫幅度α是初始电流I0与稳态电流Iχ之差除以稳态电流。单一指数弛豫的出现表明,根据吕格模型,载体介导的离子转运中涉及的不同转运步骤之一始终处于平衡状态。这很可能是自由载体跨膜的转运。利用G0、τ和α的电压依赖性来确定络合载体转位速率常数kAS的电压依赖性。在碘介导的碘化物转运中,G0、τ和α仅呈间接电压依赖性,这意味着络合物的电压依赖性转位遇到梯形势垒形状。对于碘介导的溴化物转位,G0、τ和α对施加的钳制电压没有依赖性,这表明方形能斯特-普朗克势垒限制了相应络合物的转运。

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