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氧化氘、温度和内部阳离子对Myxicola巨轴突中钠通道门控的修饰作用。

Modifications of sodium channel gating in Myxicola giant axons by deuterium oxide, temperature, and internal cations.

作者信息

Schauf C L, Bullock J O

出版信息

Biophys J. 1979 Aug;27(2):193-208. doi: 10.1016/S0006-3495(79)85211-X.

Abstract

In dialyzed Myxicola axons substitution of heavy water (D2O) externally and internally slows both sodium and potassium kinetics and decreases the maximum conductances. Furthermore, this effect is strongly temperature dependent, the magnitude of the slowing produced by D2O substitution decreasing with increasing temperature over the range 3-14 degrees C with a Q10 of approximately 0.71. The relatively small magnitude of the D2O effect, combined with its strong temperature dependence, suggests that the rate limiting process producing a conducting channel involves appreciable local changes in solvent structure. Maximum conductances in the presence of D2O were decreased by approximately 30%, while the voltage dependences of both gNa and gK were not appreciably changed. In contrast to the effects of heavy water substitution on the ionic currents, membrane asymmetry currents were not altered by D2O, suggesting that gating charge movement may preceed by several steps the final transformation of the Na+ channel to a conducting state. In Myxicola axons the effect of temperature alone on asymmetry current kinetics can be well described via a simple temporal expansion equivalent to a Q10 of 2.2, which is somewhat less than the Q10 of GNa activation. The integral of membrane asymmetry current, representing maximum charge movement, is however not appreciably altered by temperature.

摘要

在透析过的多毛纲轴突中,细胞内外的重水(D2O)替代会减缓钠和钾的动力学过程,并降低最大电导率。此外,这种效应强烈依赖于温度,在3至14摄氏度范围内,D2O替代所产生的减缓幅度会随着温度升高而降低,Q10约为0.71。D2O效应相对较小的幅度及其强烈的温度依赖性表明,产生传导通道的限速过程涉及溶剂结构的明显局部变化。在D2O存在的情况下,最大电导率降低了约30%,而gNa和gK的电压依赖性没有明显变化。与重水替代对离子电流的影响相反,膜不对称电流并未因D2O而改变,这表明门控电荷移动可能比Na+通道最终转变为传导状态早几个步骤。在多毛纲轴突中,仅温度对不对称电流动力学的影响可以通过一个简单的时间扩展来很好地描述,相当于Q10为2.2,这略小于GNa激活的Q10。然而,代表最大电荷移动的膜不对称电流积分并未因温度而明显改变。

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