Biophysical properties of the voltage gated proton channel H(V)1.

Boris Musset, Thomas Decoursey
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引用次数: 29

Abstract

The biophysical properties of the voltage gated proton channel (H(V)1) are the key elements of its physiological function. The voltage gated proton channel is a unique molecule that in contrast to all other ion channels is exclusively selective for protons. Alone among proton channels, it has voltage and time dependent gating like other "classical" ion channels. H(V)1 is furthermore a sensor for the pH in the cell and the surrounding media. Its voltage dependence is strictly coupled to the pH gradient across the membrane. This regulation restricts opening of the channel to specific voltages at any given pH gradient, therefore allowing H(V)1 to perform its physiological task in the tissue it is expressed in. For H(V)1 there is no known blocker. The most potent channel inhibitor is zinc (Zn(2+)) which prevents channel opening. An additional characteristic of H(V)1 is its strong temperature dependence of both gating and conductance. In contrast to single-file water filled pores like the gramicidin channel, H(V)1 exhibits pronounced deuterium effects and temperature effects on conduction, consistent with a different conduction mechanism than other ion channels. These properties may be explained by the recent identification of an aspartate in the pore of H(V)1 that is essential to its proton selectivity.

Abstract Image

电压门控质子通道H(V)1的生物物理性质
电压门控质子通道(H(V)1)的生物物理特性是其生理功能的关键要素。电压门控质子通道是一种独特的分子,与所有其他离子通道相比,它只对质子有选择性。在质子通道中,它与其他“经典”离子通道一样具有电压和时间依赖性门控。此外,H(V)1是细胞和周围介质pH值的传感器。它的电压依赖性与膜上的pH梯度严格耦合。这种调节将通道的打开限制在任何给定的pH梯度下的特定电压,因此允许H(V)1在其表达的组织中执行其生理任务。对于H(V)1没有已知的阻滞剂。最有效的通道抑制剂是锌(Zn(2+)),它可以阻止通道打开。H(V)1的另一个特性是它对门控和电导都有很强的温度依赖性。与gramicidin通道等单列充水孔隙相比,H(V)1表现出明显的氘效应和温度效应,与其他离子通道的传导机制不同。这些性质可以用最近在H(V)1孔中发现的天冬氨酸来解释,这对其质子选择性至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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