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青蛙(豹蛙和莫氏蛙)骨骼肌纤维中的钙通道失活。

Calcium channel inactivation in frog (Rana pipiens and Rana moctezuma) skeletal muscle fibres.

作者信息

Cota G, Nicola Siri L, Stefani E

出版信息

J Physiol. 1984 Sep;354:99-108. doi: 10.1113/jphysiol.1984.sp015365.

Abstract

The decay of the Ca2+ current (ICa) during a maintained depolarization was studied in intact twitch skeletal muscle fibres of Rana pipiens and Rana moctezuma with the three-micro-electrode voltage-clamp technique. ICa was recorded at 23 degrees C, after blocking K+ currents, in TEA methanesulphonate saline with 10 mM-Ca2+ made hypertonic by adding 350 mM-sucrose. In two-pulse experiments, ICa during the test pulse was reduced to about 80% (R. pipiens) or 50% (R. moctezuma) of the control value, without any detectable inward ICa during 7 s conditioning pre-pulses. The experimental points of the steady-state inactivation curve (h infinity) were fitted to h infinity = (1 + exp [Em - Vh)/kh]-1, where Em is the membrane potential and with Vh = -33 +/- 3 mV and kh = 6 +/- 1 mV for R. pipiens, and Vh = -44 +/- 3 mV and kh = 9.5 +/- 1.0 mV for R. moctezuma. The rate constant of decay for inactivated currents (range -8 to -47 mA cm-3) and for control currents (range -23 to -62 mA cm-3), was independent of ICa amplitude. The average rate constant of decay at 0 mV was 1.18 +/- 0.02 s-1 (66). These results indicate that in intact fibres under hypertonic solution ICa decay can be explained by a voltage-dependent inactivation process and not by depletion of tubular Ca2+. The absence of depletion could be due to a large fractional tubular volume or to the presence of a Ca2+ pump in the tubular system.

摘要

采用三微电极电压钳技术,研究了牛蛙(Rana pipiens)和莫氏蛙(Rana moctezuma)完整的单收缩骨骼肌纤维在持续去极化过程中Ca2+电流(ICa)的衰减情况。在23℃下,用含10 mM Ca2+的甲磺酸盐TEA溶液(通过添加350 mM蔗糖使其变为高渗溶液)阻断K+电流后,记录ICa。在双脉冲实验中,测试脉冲期间的ICa降低至对照值的约80%(牛蛙)或50%(莫氏蛙),在7 s的条件预脉冲期间未检测到任何内向ICa。稳态失活曲线(h∞)的实验点拟合为h∞ = (1 + exp [(Em - Vh)/kh])-1,其中Em为膜电位,牛蛙的Vh = -33 ± 3 mV,kh = 6 ± 1 mV,莫氏蛙的Vh = -44 ± 3 mV,kh = 9.5 ± 1.0 mV。失活电流(范围为-8至-47 mA cm-3)和对照电流(范围为-23至-62 mA cm-3)的衰减速率常数与ICa幅度无关。在0 mV时的平均衰减速率常数为1.18 ± 0.02 s-1(66)。这些结果表明,在高渗溶液中的完整纤维中,ICa衰减可以用电压依赖性失活过程来解释,而不是由肌管Ca2+耗竭来解释。缺乏耗竭可能是由于肌管的较大分数体积或肌管系统中存在Ca2+泵。

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