Pepose J S, Lisman J E
J Gen Physiol. 1978 Jan;71(1):101-20. doi: 10.1085/jgp.71.1.101.
The steady-state slope conductance of Limulus ventral photoreceptors increases markedly when the membrane is depolarized from rest. The ionic basis of this rectification has been examined with a voltage-clamp technique. Tail currents that occur when membrane potential is repolarized after having been depolarized have been identified. The tail currents reverse direction at a voltage that becomes more positive when Ko is increased. Rectification is reduced by extracellular 4-aminopyridine and by intracellular injection of tetra-ethyl-ammonium (TEA). These results indicate that the membrane rectification around resting potential is due primarily to voltage-sensitive K+ channels. The increase in gK caused by depolarization is not mediated by a voltage-dependent rise in in Cai++, since intracellular injection of Ca++ causes a decrease rather than an increase in slope conductance. TEA can be used to examine the functional role of the K+ channels because it blocks them without substantially affecting the light-activated Na+ conductance. The effect of TEA on response-intensity curves shows that the K+ channels serve to compress the voltage range of receptor potentials.
当美洲鲎腹侧光感受器的膜从静息状态去极化时,其稳态斜率电导会显著增加。已用电压钳技术研究了这种整流的离子基础。已识别出在膜电位去极化后再复极化时出现的尾电流。当增加细胞外钾离子浓度时,尾电流反转的电压会变得更正。细胞外4-氨基吡啶和细胞内注射四乙铵(TEA)可减少整流。这些结果表明,静息电位附近的膜整流主要归因于电压敏感性钾通道。去极化引起的钾电导增加不是由细胞内钙离子浓度的电压依赖性升高介导的,因为细胞内注射钙离子会导致斜率电导降低而非增加。TEA可用于研究钾通道的功能作用,因为它能阻断钾通道而基本不影响光激活的钠电导。TEA对反应强度曲线的影响表明,钾通道起到压缩感受器电位电压范围的作用。