Miller A, Schmidt G, Eibl H, Knoll W
Biochim Biophys Acta. 1985 Mar 14;813(2):221-9. doi: 10.1016/0005-2736(85)90237-8.
Voltage jump-current relaxation studies have been performed with dipicrylamine-doped black membranes of binary lipid mixtures. As in the case of the carrier-mediated ion transport (Schmidt, G., Eibl, H. and Knoll, W. (1982) J. Membrane Biol. 70, 147-155) no evidence was found that the neutral lipid phosphatidylcholine (DPMPC) and the charged phosphatidic acid (DPMPA) are heterogeneously distributed in the membrane over the whole range of composition. However, besides a continuous dilution of the surface charges of DPMPA by the addition of DPMPC molecules, different structural properties of mixed membranes influence the kinetics of the dipicrylamine transport. The addition of Ca2+ to the electrolyte induces a lipid phase separation within the membrane into two fluid phases of distinctly different characteristics of the translocation of hydrophobic ions. Thus, it is possible to determine a preliminary composition phase diagram for the DPMPA/DPMPC mixtures as a function of the Ca2+ concentration.
利用二硝基苯甲酰胺掺杂的二元脂质混合物黑色膜进行了电压跃变-电流弛豫研究。与载体介导的离子运输情况一样(施密特,G.,艾布尔,H.和克诺尔,W.(1982年)《膜生物学杂志》70卷,第147 - 155页),没有发现证据表明中性脂质磷脂酰胆碱(DPMPC)和带电的磷脂酸(DPMPA)在整个组成范围内在膜中呈不均匀分布。然而,除了通过添加DPMPC分子对DPMPA的表面电荷进行连续稀释外,混合膜的不同结构特性会影响二硝基苯甲酰胺的运输动力学。向电解质中添加Ca2 +会在膜内诱导脂质相分离成两个具有明显不同疏水离子转运特性的流体相。因此,有可能确定DPMPA/DPMPC混合物作为Ca2 +浓度函数的初步组成相图。