Klusemann J, Meves H
I. Physiologisches Institut, Universität des Saarlandes, Homburg-Saar, Federal Republic of Germany.
Eur Biophys J. 1992;21(2):93-7. doi: 10.1007/BF00185424.
The effect of phloretin, a dipolar organic compound, on single potassium channel currents of myelinated nerve fibres of Xenopus laevis has been investigated, using inside-out patches prepared by the method of Jonas et al. (1989). The I channel, a potential dependent K channel with intermediate deactivation kinetics, was reversibly blocked by 20 microM phloretin applied on the inside; the block was strongest at negative membrane potentials and less pronounced at positive potentials. Phloretin shifted the curve relating open probability to membrane potential towards more positive potentials and reduced its slope and maximum. This confirms previous findings on the effect of phloretin on the voltage dependence of the fast macroscopic K conductance. Single channel conductance and deactivation kinetics were not altered by phloretin.
已使用乔纳斯等人(1989年)的方法制备的内面向外膜片,研究了偶极有机化合物根皮素对非洲爪蟾有髓神经纤维单钾通道电流的影响。I通道是一种具有中等失活动力学的电压依赖性钾通道,在内侧施加20微摩尔根皮素可使其可逆性阻断;该阻断在负膜电位时最强,在正电位时则不太明显。根皮素使开放概率与膜电位的关系曲线向更正的电位移动,并降低了其斜率和最大值。这证实了先前关于根皮素对快速宏观钾电导电压依赖性影响的研究结果。根皮素未改变单通道电导和失活动力学。