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青蛙骨骼肌纤维中钙通道的饱和度及表面电荷效应

Saturation of calcium channels and surface charge effects in skeletal muscle fibres of the frog.

作者信息

Cota G, Stefani E

出版信息

J Physiol. 1984 Jun;351:135-54. doi: 10.1113/jphysiol.1984.sp015238.

Abstract

Voltage-clamp and current-clamp experiments were performed to study Ca2+ and Ba2+ permeation through Ca channels in intact twitch skeletal muscle fibres of the frog. Surface charge effects were taken into consideration. Ca2+ (ICa) or Ba2+ (IBa) currents, or Ca2+ and Ba2+ action potentials were recorded in the presence of external tetraethylammonium (TEA+) ions and by replacing C1- for CH3SO3-. To further block K+ outward currents, muscles were incubated in a K+-free, TEA+ and Cs+-containing solution prior to experiments. When 10 mM-Ca2+ was replaced by 10 mM-Ba2+, the I/V curve for the peak inward current shifted by 15-20 mV to more negative potentials and the maximal peak inward current increased from -39 +/- 2 mA cm-3 (5) to -51 +/- 3 mA cm-3 (7). The decay of ICa and IBa followed a simple exponential time course and became faster for large depolarizations. The overshoot of the action potentials changed 29 +/- 3 mV or 32 +/- 3 mV for a 10-fold change in the Ca2+ or Ba2+ concentrations respectively. Ca2+ action potentials were 15-20 mV larger than Ba2+ action potentials. The maximum rate of rise Vmax and the Ca2+ or Ba2+ conductance GC2+ during the plateau tend to saturate as divalent cation concentration was increased. The Michaelis constant (Km) values obtained were respectively: 5.6 and 6.0 mM for Ca2+ and 12.5 and 8.0 mM for Ba2+. When Ca2+ or Ba2+ concentrations were increased, the effective threshold of the inward current Theff and the membrane potential E* at Vmax shifted to more positive potentials along the voltage axis. These shifts were similar for Theff and E* and were more pronounced for Ca2+ than for Ba2+. Voltage shifts could be adequately quantified by the Gouy-Chapman theory with a density of surface charges near Ca channels of 0.20 e nm-2 and including a specific binding constant for Ca2+ of 45 +/- 4 m-1. The fractional increase of the Ca2+ and Ba2+ calculated concentrations at the membrane surface near the channel was smaller than the corresponding one in the bulk solution. This partially explained the reported saturation. Saturation was still present in the Vmax of GC2+ curves corrected for surface concentration. The corrected Km values for the Vmax data were 60 mM for Ca2+ and 350 mM for Ba2+.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

进行电压钳和电流钳实验,以研究蛙完整单收缩骨骼肌纤维中Ca2+和Ba2+通过钙通道的渗透情况。考虑了表面电荷效应。在外部四乙铵(TEA+)离子存在下,通过用CH3SO3-取代Cl-,记录Ca2+(ICa)或Ba2+(IBa)电流,或Ca2+和Ba2+动作电位。为了进一步阻断K+外向电流,在实验前将肌肉置于不含K+、含TEA+和Cs+的溶液中孵育。当用10 mM Ba2+取代10 mM Ca2+时,内向电流峰值的I/V曲线向更负电位移动15 - 20 mV,最大内向电流峰值从-39±2 mA cm-3(5)增加到-51±3 mA cm-3(7)。ICa和IBa的衰减遵循简单的指数时间进程,且在大去极化时变得更快。对于Ca2+或Ba2+浓度10倍的变化,动作电位的超射分别改变29±3 mV或32±3 mV。Ca2+动作电位比Ba2+动作电位大15 - 20 mV。随着二价阳离子浓度增加,平台期的最大上升速率Vmax和Ca2+或Ba2+电导GC2+趋于饱和。得到的米氏常数(Km)值分别为:Ca2+为5.6和6.0 mM,Ba2+为12.5和8.0 mM。当Ca2+或Ba2+浓度增加时,内向电流有效阈值Theff和Vmax时的膜电位E沿电压轴移向更正电位。Theff和E的这些移动相似,且Ca2+比Ba2+更明显。电压移动可用古依-查普曼理论充分量化,钙通道附近表面电荷密度为0.20 e nm-2,包括Ca2+的特异性结合常数为45±4 m-1。通道附近膜表面Ca2+和Ba2+计算浓度的分数增加小于本体溶液中的相应值。这部分解释了报道的饱和现象。在针对表面浓度校正的GC2+曲线的Vmax中仍存在饱和。Vmax数据校正后的Km值,Ca2+为60 mM,Ba2+为350 mM。(摘要截断于400字)

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