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高氯酸盐引起的青蛙骨骼肌纤维电学和力学参数的改变。

Perchlorate-induced alterations in electrical and mechanical parameters of frog skeletal muscle fibres.

作者信息

Gomolla M, Gottschalk G, Lüttgau H C

出版信息

J Physiol. 1983 Oct;343:197-214. doi: 10.1113/jphysiol.1983.sp014888.

Abstract

The effect of the perchlorate anion (ClO4-) on the potential dependence of mechanical and electrical parameters was investigated in skeletal muscles fibres of the frog. Two main methods were employed: twitches and K contractures were induced in isolated fibres from the semitendinosus or iliofibularis muscle, and point voltage clamp was applied in sartorius and short toe muscle fibres. Twitch height was unaffected below 10(-4) M-ClO4-, it usually increased several-fold in the concentration range of 10(-3) to 10(-2) M-ClO4- and continued to rise slowly between 10(-2) and 10(-1) M-ClO4-. ClO4- caused a parallel shift of the activation curve, which relates peak force to membrane potential, towards more negative potentials by up to 40 mV (70 mM-ClO4-). The shift in force activation was not accompanied by a corresponding shift in the potential dependence of force inactivation. In the presence of ClO4-, maximum force development upon depolarization to -60 or -50 mV could be maintained for several minutes, suggesting that spontaneous relaxation after full depolarization is due to a potential-dependent inactivation process, and not to an exhaustion of Ca2+ release. ClO4- shifted the threshold for the initiation of the action potential only slightly towards more negative potentials (approximately 10 mV at 70 mM-ClO4-). Little or no shift was observed in the lower concentration range (less than 10 mM) where the threshold of force activation was shifted by about 20 mV. ClO4- slightly depressed the activation of the delayed rectifier without causing any distinct change in its threshold potential. Electrophoretic injection of ClO4- (internal ClO4- concentration ([ClO4-]i) approximately 1 mM) induced similar effects to those following external application of this anion, i.e. a shift of force activation towards more negative potentials. Of several other anions tested, only dichromate, which resembles ClO4-in its tetrahedal structure, similarly caused force activation after repolarization. We conclude that at low concentrations (less than 10 mM) ClO4- rather specifically improves excitation-contraction coupling by direct interference with the gating mechanism which activates Ca release from the sarcoplasmic reticulum. At higher concentrations, it may also influence potential-dependent membrane processes by adsorption to the outer surface of the membrane.

摘要

在青蛙的骨骼肌纤维中研究了高氯酸根阴离子(ClO4-)对机械和电学参数电位依赖性的影响。采用了两种主要方法:在半腱肌或髂腓肌的分离纤维中诱导抽搐和钾收缩,并在缝匠肌和短趾肌纤维中应用点电压钳。在10^(-4) M-ClO4-以下,抽搐高度不受影响,在10^(-3)至10^(-2) M-ClO4-的浓度范围内通常增加几倍,并在10^(-2)至10^(-1) M-ClO4-之间继续缓慢上升。ClO4-导致激活曲线平行移动,该曲线将峰值力与膜电位相关联,向更负的电位移动高达40 mV(70 mM-ClO4-)。力激活的移动并未伴随着力失活的电位依赖性的相应移动。在存在ClO4-的情况下,去极化至-60或-50 mV时的最大力发展可持续几分钟,这表明完全去极化后的自发松弛是由于电位依赖性失活过程,而不是由于Ca2+释放的耗尽。ClO4-仅使动作电位起始阈值略微向更负的电位移动(70 mM-ClO4-时约为10 mV)。在较低浓度范围(小于10 mM)中未观察到明显移动,而在该浓度范围内力激活阈值移动约20 mV。ClO4-略微抑制延迟整流器的激活,而其阈值电位未发生任何明显变化。电泳注入ClO4-(内部ClO4-浓度([ClO4-]i)约为1 mM)诱导的效应与外部应用该阴离子后的效应相似,即力激活向更负的电位移动。在测试的其他几种阴离子中,只有重铬酸盐,其四面体结构与ClO4-相似,在复极化后同样引起力激活。我们得出结论,在低浓度(小于10 mM)下,ClO4-通过直接干扰激活肌浆网中Ca释放的门控机制,相当特异性地改善兴奋-收缩偶联。在较高浓度下,它也可能通过吸附到膜的外表面来影响电位依赖性膜过程。

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