Usai C, Robello M, Gambale F, Marchetti C
J Membr Biol. 1984;82(1):15-23. doi: 10.1007/BF01870728.
The presence of monosialoganglioside GM1 in dioleoylphosphatidylcholine black lipid membranes modifies the transport properties of the hydrophobic ion tetraphenylborate and the kinetics of relaxation of this ion after the application of a voltage step. At zero applied voltage, the difference in the relaxation time constants between pure phospholipid and ganglioside-phospholipid mixed membranes is large. This difference may possibly rise from changes in the membranes fluidity since it has been found that the two types of membranes do not show appreciable difference in thickness. A uniform distribution of GM1 in the membrane seems to be more probable than the presence of lateral phase separation phenomena. The partition coefficient of tetraphenylborate between the bathing NaCl solution and the membrane appears to depend on the ionic strength, which controls the screening effect of the Na+ ions on the COO- charged groups of the sialic acid of the ganglioside polar heads. Effects of dipolar potentials on the partition coefficient can be excluded, being the absorption plane of tetraphenylborate probably located outside the dipolar layer of the membrane.
在二油酰磷脂酰胆碱黑色脂质膜中,单唾液酸神经节苷脂GM1的存在改变了疏水性离子四苯硼酸盐的转运特性以及施加电压阶跃后该离子的弛豫动力学。在零外加电压下,纯磷脂膜和神经节苷脂 - 磷脂混合膜之间的弛豫时间常数差异很大。这种差异可能源于膜流动性的变化,因为已经发现这两种类型的膜在厚度上没有明显差异。GM1在膜中均匀分布似乎比存在横向相分离现象更有可能。四苯硼酸盐在NaCl浴液和膜之间的分配系数似乎取决于离子强度,离子强度控制着Na +离子对神经节苷脂极性头部唾液酸带负电的 - COO基团的屏蔽作用。可以排除偶极电位对分配系数的影响,因为四苯硼酸盐的吸收平面可能位于膜的偶极层之外。