Pickar A D, Amos W D
Biochim Biophys Acta. 1976 Nov 11;455(1):36-55. doi: 10.1016/0005-2736(76)90152-8.
Surface and interior electrical properties of lecithin-cholesterol bilayer membranes treated with the uncoupler pentachlorophenol have been determined on the basis of a.c. measurements over a wide range of frequencies (0.02 to 1000 kHZ). The method used depends on accurately determining the resistance of the aqueous solution in series with each individual membrane by extrapolating admittance data into infinite frequency. Loss tangent vs. frequency curves are corrected by subtracting out a loss contribution which is present in untreated membranes and is due, presumably, to dielectric relaxation. The results, which are useful below 100 kHZ, can be fitted to loss tangent curves computed for a three-element equivalent circuit consisting of frequency independent conductance-capacitance pairs, arranged in series to represent surface and interior properties of membranes. Interior conductances agree with net conductances obtained from d.c. measurements. The pH and concentration dependence of surface conductance is consistent with a scheme of transport in which a fixed number of surface binding sites are filled preferentially with neutral pentachlorophenol molecules, which in turn dissociate to supply protons to the aqueous phase. Surface capacitances range from 15 to 90 times that of interior capacitance and show a systematic increase with pentachlorophenol concentration at high pH, and a decrease with concentration at low pH.
已基于在很宽频率范围(0.02至1000千赫兹)内的交流测量,测定了用解偶联剂五氯苯酚处理的卵磷脂 - 胆固醇双层膜的表面和内部电学性质。所使用的方法依赖于通过将导纳数据外推到无限频率来精确测定与每个单独膜串联的水溶液的电阻。通过减去未处理膜中存在的、大概是由于介电弛豫引起的损耗贡献,对损耗角正切与频率曲线进行校正。在100千赫兹以下有用的结果,可以拟合为由频率无关的电导 - 电容对组成的三元等效电路计算出的损耗角正切曲线,这些对串联排列以表示膜的表面和内部性质。内部电导与从直流测量获得的净电导一致。表面电导对pH和浓度的依赖性与一种传输方案一致,在该方案中,固定数量的表面结合位点优先被中性五氯苯酚分子占据,这些分子继而解离以向水相提供质子。表面电容范围为内部电容的15至90倍,并在高pH下随五氯苯酚浓度呈系统性增加,在低pH下随浓度降低。