Chen W, Han Y, Chen Y, Astumian D
Departments of Dermatology and Physiology and Biophysics, The University of Illinois at Chicago, Chicago, Illinois 60612, USA.
Biophys J. 1998 Jul;75(1):196-206. doi: 10.1016/S0006-3495(98)77506-X.
The goal of this study is to distinguish the supramembrane potential difference-induced electroconformational changes from the huge transmembrane current-induced thermal damages in the delayed rectifier K+ channels. A double Vaseline-gap voltage clamp was used to deliver shock pulses and to monitor the channel currents. Three pairs of 4-ms shock pulses were used to mimic the electric shock by a power-line frequency electric field. Each pair consists of two pulses with the same magnitude, starting from 350 to 500 mV, but with opposite polarities. The shock pulse-generated transmembrane ion flux and the responding electric energy, the Joule heating, consumed in the cell membrane, as well as the effects on the K+ channel currents, were obtained. Results showed that huge transmembrane currents are not necessary to cause damages in the K+ channel proteins. In contrast, reductions in the K+ channel currents are directly related to the field-induced supramembrane potential differences. By a comparison with the shock field-induced Joule heating effects on cell membranes, the field-induced supramembrane potential difference plays a dominant role in damaging the K+ channels, resulting in electroconformational changes in the membrane proteins. In contrast, the shock field-induced huge transmembrane currents, therefore the thermal effects, play a secondary, trivial role.
本研究的目的是在延迟整流钾通道中,区分超膜电位差诱导的电构象变化与巨大跨膜电流诱导的热损伤。使用双凡士林间隙电压钳来施加电击脉冲并监测通道电流。使用三对4毫秒的电击脉冲来模拟电力线频率电场的电击。每对由两个幅度相同的脉冲组成,起始电压为350至500毫伏,但极性相反。获得了电击脉冲产生的跨膜离子通量以及在细胞膜中消耗的响应电能(焦耳热),以及对钾通道电流的影响。结果表明,巨大的跨膜电流并非导致钾通道蛋白损伤的必要条件。相反,钾通道电流的减少与电场诱导的超膜电位差直接相关。通过将电击场对细胞膜的焦耳热效应进行比较,电场诱导的超膜电位差在损伤钾通道方面起主导作用,导致膜蛋白发生电构象变化。相比之下,电击场诱导的巨大跨膜电流以及由此产生的热效应起次要的、微不足道的作用。