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电压钳制枪乌贼巨轴突中的钾离子通量比率。

Potassium flux ratio in voltage-clamped squid giant axons.

作者信息

Begenisich T, De Weer P

出版信息

J Gen Physiol. 1980 Jul;76(1):83-98. doi: 10.1085/jgp.76.1.83.

Abstract

The potassium flux ratio across the axolemma of internally perfused, voltage-clamped giant axons of Loligo pealei has been evaluated at various membrane potentials and internal potassium concentrations ([K]i). Four different methods were used: (a) independent measurement of one-way influx and efflux of 42K; (b) simultaneous measurement of net K current (IK) and 42K influx; (c) simultaneous measurement of IK and 42K efflux; and (d) measurement of potassium conductance and 42K influx at the potassium equilibrium potential. The reliability of each of these methods is discussed. The average value of the exponent n' in the Hodgkin-Keynes equation ranged from 1.5 at -4mV and 200 mM [K]i to 3.3 at -38 mV and 350 mM [K]i and appeared to be a function of membrane potential and possibly of [K]i. It is concluded that the potassium channel of squid giant axon is a multi-ion, single-file pore with three or more sites.

摘要

在不同膜电位和细胞内钾浓度([K]i)条件下,对经内部灌注、电压钳制的莱氏拟乌贼巨大轴突轴膜上的钾通量比率进行了评估。采用了四种不同方法:(a)独立测量42K的单向流入和流出;(b)同时测量净钾电流(IK)和42K流入;(c)同时测量IK和42K流出;以及(d)在钾平衡电位下测量钾电导和42K流入。讨论了这些方法中每一种方法的可靠性。霍奇金 - 凯恩斯方程中指数n'的平均值范围从-4mV和200 mM [K]i时的1.5到-38 mV和350 mM [K]i时的3.3,并且似乎是膜电位以及可能还有[K]i的函数。得出的结论是,鱿鱼巨大轴突的钾通道是一个具有三个或更多位点的多离子、单排孔道。

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