Goldman L, Chandler R E
Biophys J. 1986 Mar;49(3):761-6. doi: 10.1016/S0006-3495(86)83702-X.
In some preparations the time constant of Na current inactivation determined with two pulses (tau c) is larger over some range of potentials than that determined from the current decay during a single pulse (tau h), while in others tau c(V) and tau h(V) are the same. Myxicola giant axons obtained from specimens collected from coastal waters of northeastern North America display a tau c - tau h difference under all conditions we have tested. In these axons tau c(V) and tau h(V) are unchanged by reduction of Na current density, addition of K-channel blockers, or internal perfusion. Specimens of the same species, Myxicola infundibulum, collected from a different geographical location, the south coast of England, have been studied under internal perfusion with K as the major cation internally, with reduced external Na concentration and in the presence of K-channel blockers. In these axons tau c(V) and tau h(V) approximately superpose, raising the possibility that dramatic differences in Na current kinetics may not necessarily reflect basic differences in the organization of the Na channel gating machinery.
在某些制剂中,用双脉冲测定的钠电流失活时间常数(τc)在一定电位范围内比单脉冲电流衰减测定的时间常数(τh)大,而在其他制剂中,τc(V)和τh(V)相同。从北美东北部沿海水域采集的标本中获得的黏液虫巨轴突在我们测试的所有条件下都显示出τc - τh差异。在这些轴突中,τc(V)和τh(V)不会因钠电流密度降低、添加钾通道阻滞剂或内部灌注而改变。从不同地理位置,即英格兰南海岸采集的同一物种——漏斗黏液虫的标本,在以钾为主要内部阳离子、降低外部钠浓度并存在钾通道阻滞剂的情况下进行内部灌注研究。在这些轴突中,τc(V)和τh(V)大致重叠,这增加了钠电流动力学的显著差异不一定反映钠通道门控机制组织基本差异的可能性。