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首页> 外文期刊>The Journal of general physiology >The Effect of Surface Charge on the Voltage-Dependent Conductance Induced in Thin Lipid Membranes by Monazomycin
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The Effect of Surface Charge on the Voltage-Dependent Conductance Induced in Thin Lipid Membranes by Monazomycin

机译:表面电荷对莫那霉素在薄脂膜中诱导的电压依赖性电导的影响

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Differences in the behavior of phosphatidylethanolamine (PE) and phosphatidylglycerol (PG) thin lipid membranes treated with monazomycin are shown to be due to the negative surface charge on PG membranes. We demonstrate that shifts of the conductance-voltage ( g-V ) characteristic of PG films produced by changes of univalent or divalent cation concentrations result from changes of the membrane surface potential on one or both sides. In particular, if divalent cations are added to the aqueous phase not containing monazomycin, the resulting asymmetry of the surface potentials results in an intramembrane potential difference not recordable by electrodes in the bulk phases. Nevertheless, this intramembrane potential difference is "seen" by the monazomycin, and consequently the g-V characteristic is shifted along the voltage axis. These changes are accounted for by diffuse double layer theory. Thus we find it unnecessary to invoke specific binding of Mg++ or Ca++ to the negative charges of PG membranes to explain the observation that concentrations of these ions some 100-fold lower than that of the univalent cation present produce large shifts of the g-V characteristic. We suggest that analogous shifts of g-V characteristics in axons produced by changes of divalent cation concentration are also best explained by diffuse double layer theory.
机译:莫那霉素处理的磷脂酰乙醇胺(PE)和磷脂酰甘油(PG)薄脂膜的行为差异显示是由于PG膜表面带负电荷。我们证明了由一价或二价阳离子浓度的变化产生的PG膜的电导电压(g-V)特征的变化是由膜表面一侧或两侧的电势变化引起的。特别是,如果将二价阳离子添加到不含莫那霉素的水相中,则表面电势的不对称性将导致整体相中的电极无法记录膜内电势差。然而,该膜内电势差被莫那霉素“看到”,因此,g-V特性沿电压轴移动。这些变化是由弥散双层理论解释的。因此,我们发现没有必要调用Mg ++或Ca ++与PG膜负电荷的特异性结合来解释观察到的这些离子的浓度比存在的单价阳离子低约100倍会导致g-V特性发生较大变化。我们认为,通过弥散双层理论也可以最好地解释由二价阳离子浓度变化产生的轴突中g-V特性的类似变化。

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