Ashcroft F M, Heiny J A, Vergara J
J Physiol. 1985 Feb;359:269-91. doi: 10.1113/jphysiol.1985.sp015585.
The non-penetrating potentiometric dyes NK2367 and WW375 were used to investigate the effect of inward rectification on the weighted-average tubular membrane potential in single frog muscle fibres voltage clamped using a three-Vaseline-gap method. In 100 mM-K solution, when inward rectification was activated by hyperpolarization the steady-state amplitude of the transverse tubular system (T-system) optical signal was reduced, and its rise time was faster than that recorded for an equivalent depolarization. The voltage dependence of the optical attenuation followed that of inward rectification, increasing with increasing hyperpolarization. For a voltage-clamp step of -140 mV the optical attenuation was 0.72 which corresponds to a weighted-average T-system potential change of 100 mV. When inward rectification was blocked in a Cs, TEA solution the optical attenuation was also abolished. The voltage dependence of the block of the inward currents in solutions containing low concentrations of Cs was also reflected in the T-system optical signals. Our results were satisfactorily predicted by a radial cable model of the T-system, assuming the same specific inward rectifier conductance in surface and tubular membranes. This analysis predicts that the measured optical attenuation corresponds to a decrease in the tubular space constant, lambda T, from 120 micron under passive conditions to about 40 micron when inward rectification is fully, activated. The voltage dependence of inward rectification measured at the surface membrane was reasonably well predicted by assuming that the specific conductance obeyed a Boltzmann type of voltage dependence; the major effect of tubular decrements was to reduce the steepness of the total (surface + T-system) conductance-voltage relation.
使用非穿透性电位染料NK2367和WW375,采用三凡士林间隙法对单根蛙肌纤维进行电压钳制,研究内向整流对加权平均管状膜电位的影响。在100 mM - K溶液中,当通过超极化激活内向整流时,横管系统(T系统)光信号的稳态幅度降低,其上升时间比等效去极化时记录的更快。光衰减的电压依赖性遵循内向整流的电压依赖性,随着超极化程度的增加而增加。对于 - 140 mV的电压钳制阶跃,光衰减为0.72,这对应于加权平均T系统电位变化100 mV。当在Cs、TEA溶液中阻断内向整流时,光衰减也消失。含有低浓度Cs的溶液中内向电流阻断的电压依赖性也反映在T系统光信号中。假设表面膜和管状膜中内向整流器的比电导相同,我们的结果通过T系统的径向电缆模型得到了满意的预测。该分析预测,测得的光衰减对应于管状空间常数lambda T从被动条件下的120微米减小到内向整流完全激活时的约40微米。假设比电导服从玻尔兹曼型电压依赖性,表面膜处测得的内向整流的电压依赖性得到了合理的良好预测;管状衰减的主要作用是降低总(表面 + T系统)电导 - 电压关系的陡度。