Perkins W R, Cafiso D S
Biochemistry. 1986 Apr 22;25(8):2270-6. doi: 10.1021/bi00356a063.
Paramagnetic amphiphiles have been utilized to measure and characterize electrogenic H+/OH- ion transport in a series of model membrane systems. Membrane conductivity to H+/OH- ions varies with the method of vesicle preparation and with the level of saturation of the membrane phospholipid. Small sonicated vesicles have the lowest conductivities by approximately an order of magnitude compared to reverse-phase or ether-injection vesicle systems. This conductivity is particularly sensitive to the presence of polyunsaturated lipids in the vesicle membrane. The current-delta pH dependence of the H+/OH- conductivity shows a nonideal behavior and renders the phenomenological membrane permeability dependent upon the experimental value of delta pH that is chosen. These factors can account for much, if not all, of the variability in the published values for the H+/OH- permeability of model membranes. A procedure has been developed to establish and estimate changes in the dipole potential of vesicle bilayers. Using this method, we demonstrate that H+/OH- currents are insensitive to alterations in the membrane dipole field, a result that suggests that these currents are not rate limited by diffusion over simple electrostatic barriers in the membrane interior. In addition, conduction in D2O has been examined, and we find that there is little difference in the magnitudes of D+/OD- currents compared to H+/OH- currents in vesicle systems.
顺磁性两亲物已被用于测量和表征一系列模型膜系统中的电生H⁺/OH⁻离子转运。膜对H⁺/OH⁻离子的电导率随囊泡制备方法以及膜磷脂的饱和度水平而变化。与反相或乙醚注入囊泡系统相比,小型超声处理囊泡的电导率大约低一个数量级。这种电导率对囊泡膜中多不饱和脂质的存在特别敏感。H⁺/OH⁻电导率的电流-ΔpH依赖性表现出非理想行为,使得唯象膜渗透率取决于所选择的ΔpH实验值。这些因素可以解释模型膜H⁺/OH⁻渗透率已发表值中很大一部分(如果不是全部)的变异性。已经开发出一种程序来建立和估计囊泡双层偶极电势的变化。使用这种方法,我们证明H⁺/OH⁻电流对膜偶极场的变化不敏感,这一结果表明这些电流不受膜内部简单静电屏障上扩散的速率限制。此外,已经研究了D₂O中的传导,并且我们发现在囊泡系统中,D⁺/OD⁻电流的大小与H⁺/OH⁻电流相比几乎没有差异。