Hanke W, Kaupp U B
Biophys J. 1984 Nov;46(5):587-95. doi: 10.1016/S0006-3495(84)84057-6.
Membranes vesicles, prepared from bovine rod outer segments were fused with planar lipid bilayers. Two different ion channels were identified by recording currents from single channels. Both types of channels were selective for sodium rather than potassium and were impermeable to chloride ions. Unit conductances were 20 and 120 pS, respectively, in 150 mM sodium chloride. The channel with the larger unit conductance was sensitive to the transmembrane potential. This channel rapidly activated within less than 10 ms after a voltage jump to a more negative membrane potential and then inactivated after several seconds. The duration of the active period and the properties of the channel depended on the amplitude of the voltage jump. The channel of smaller unit conductance did not show any voltage-dependent activation or inactivation. Both types of channels were insensitive to light in the planar bilayer system. Channels incorporated into planar bilayers on a Teflon sandwich septum or on the tip of a glass micropipette gave similar results.
从牛视杆细胞外段制备的膜囊泡与平面脂质双层融合。通过记录单通道电流鉴定出两种不同的离子通道。两种类型的通道都对钠离子具有选择性,而不是对钾离子,并且对氯离子不通透。在150 mM氯化钠中,单位电导分别为20和120 pS。单位电导较大的通道对跨膜电位敏感。该通道在电压跃升至更负的膜电位后不到10毫秒内迅速激活,然后在几秒钟后失活。激活期的持续时间和通道的特性取决于电压跃变的幅度。单位电导较小的通道未表现出任何电压依赖性激活或失活。在平面双层系统中,两种类型的通道对光均不敏感。整合到聚四氟乙烯夹心隔膜或玻璃微吸管尖端的平面双层中的通道给出了相似的结果。