Brodie C, Bak A, Shainberg A, Sampson S R
J Cell Physiol. 1987 Feb;130(2):191-8. doi: 10.1002/jcp.1041300204.
The role of Na-K ATPase in the determination of resting membrane potential (Em) as a function of extracellular K ion concentration was investigated in cultured rat myotubes. The Em of control myotubes at 37 degrees C varied as a function of (K+)0 with a slope of about 58-60 mV per ten-fold change in (K+)0. Inhibition of the Na-K pump with ouabain or by reduced temperature revealed that this relation consists of two components. One, between (K+)0 of 10 and 100 mM, remains unchanged by alterations in enzyme activity; The second, between (K+)0 of 1 and 10 mM, is related to the amount of Na-K pump activity, the slope decreasing as pump activity decreases. Indeed, with complete inhibition of the Na-K pump, Em does not change over the range of (K+)0 1 to 10 mM. Measurements of 86Rb efflux and input resistance of individual myotubes showed that membrane permeability does not change as (K+)0 increases from 1 to 10 mM but increases as (K+)0 increases further. Monensin, which increases Na ion permeability, increases Em at values of external K+ below 10 mM, and is without effect at higher values of K+ concentration. The effect of monensin is blocked by ouabain. Tetrodotoxin, which blocks voltage-dependent Na+ channels, decreases Em at low (2-10 mM) K+. We conclude that changes in Em as a function of extracellular K+ concentration in the physiological range are not adequately explained by the diffusion potential hypothesis of Em, and that other theories (electrogenic pump, surface-absorption) must be considered.
在培养的大鼠肌管中研究了钠钾ATP酶在决定静息膜电位(Em)作为细胞外钾离子浓度函数方面的作用。在37℃时,对照肌管的Em随(K+)0的变化而变化,(K+)0每变化10倍,斜率约为58 - 60 mV。用哇巴因或降低温度抑制钠钾泵表明,这种关系由两个部分组成。一个部分是在(K+)0为10至100 mM之间,酶活性的改变对此没有影响;第二个部分是在(K+)0为1至10 mM之间,与钠钾泵活性的量有关,随着泵活性降低,斜率减小。实际上,当钠钾泵完全被抑制时,在(K+)0为1至10 mM的范围内Em不会改变。对单个肌管的86Rb外流和输入电阻的测量表明,当(K+)0从1 mM增加到10 mM时,膜通透性没有变化,但当(K+)0进一步增加时膜通透性增加。莫能菌素可增加钠离子通透性,在外部钾离子浓度低于10 mM时会增加Em,而在较高钾离子浓度时则没有影响。莫能菌素的作用可被哇巴因阻断。河豚毒素可阻断电压依赖性钠离子通道,在低钾(2 - 10 mM)时会降低Em。我们得出结论,在生理范围内,Em作为细胞外钾离子浓度函数的变化不能用Em的扩散电位假说来充分解释,必须考虑其他理论(电生泵、表面吸收)。