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离子通过短杆菌肽A通道的运动。论水相扩散阻力和离子-水相互作用的重要性。

Ion movement through gramicidin A channels. On the importance of the aqueous diffusion resistance and ion-water interactions.

作者信息

Andersen O S, Procopio J

出版信息

Acta Physiol Scand Suppl. 1980;481:27-35.

PMID:6159776
Abstract

The movement of an ion through a membrane channel proceeds in at least five separate steps: Diffusion through the aqueous phases up to the channel, association with the channel itself, translocation through the channel, dissociation from the channel, and diffusion through the aqueous phases out from the channel. We demonstrate that, contrary to current working assumptions, the aqueous diffusion step may be an important determinant of overall ion movement through the channel. We further describe the kinetics of Na+ movement through gramicidin A channels. Using these data we show that one will have to consider the movement of H2O through the channel explicitly in any complete model for ion translocation through the channel interior.

摘要

离子通过膜通道的运动至少包括五个独立步骤

通过水相扩散至通道、与通道本身结合、通过通道转运、从通道解离以及通过水相从通道扩散出去。我们证明,与当前的工作假设相反,水相扩散步骤可能是离子通过通道整体运动的一个重要决定因素。我们进一步描述了钠离子通过短杆菌肽A通道的动力学。利用这些数据我们表明,在任何关于离子通过通道内部转运的完整模型中,都必须明确考虑水分子通过通道的运动。

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