Nilius B, Boldt W, Benndorf K
Gen Physiol Biophys. 1986 Oct;5(5):473-84.
Effects of the plant alkaloid Aconitine on the kinetics of sodium channels were studied in enzymatically isolated single cells of the mouse ventricular myocardium. Aconitine (1 mumol/l) induced a prolongation of the 90% repolarization of action potentials from 52.4 +/- 3.7 ms to 217.0 +/- 12.5 ms. Delayed terminal repolarization and oscillatory afterpotentials preceded spontaneous activity with high frequencies. Peak sodium currents were diminished from 28.0 +/- 9.0 to 14.0 +/- 6.0 nA. The reversal potential of the sodium current was shifted from 16.0 +/- 11.0 to -8.0 +/- 6.0 mV (52.5 mmol/l extracellular sodium concentration) suggesting a decreased selectivity of the Aconitine-modified Na channels. The m-affinity-curves were shifted 31 mV towards more negative potentials at a constant slope. The h affinity-curves were shifted in the same direction by 13 mV. The slope parameter of the h affinity-voltage relationship was enlarged from 9.1 +/- 2.2 mV to 15.6 +/- 4.4 mV. Shifts in m affinity and h affinity resulted in an increased "window". The alkaloid modified channels inactivated extremely slowly at potentials negative to -40 mV, but showed a fast and complete inactivation at potentials positive to -40 mV.
在酶分离的小鼠心室肌单细胞中研究了植物生物碱乌头碱对钠通道动力学的影响。乌头碱(1 μmol/l)使动作电位的90%复极化时间从52.4±3.7毫秒延长至217.0±12.5毫秒。延迟的终末复极化和振荡后电位先于高频自发活动出现。钠电流峰值从28.0±9.0纳安降至14.0±6.0纳安。钠电流的反转电位从16.0±11.0毫伏移至-8.0±6.0毫伏(细胞外钠浓度为52.5毫摩尔/升),表明乌头碱修饰的钠通道选择性降低。m亲和力曲线在斜率恒定的情况下向更负的电位方向移动了31毫伏。h亲和力曲线向相同方向移动了13毫伏。h亲和力-电压关系的斜率参数从9.1±2.2毫伏增大到15.6±4.4毫伏。m亲和力和h亲和力的变化导致“窗口”增大。该生物碱修饰的通道在负于-40毫伏的电位下失活极慢,但在正于-40毫伏的电位下表现出快速且完全的失活。