首页> 美国卫生研究院文献>The Journal of Physiology >Effects of extracellular calcium on calcium movements of excitation-contraction coupling in frog skeletal muscle fibres.
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Effects of extracellular calcium on calcium movements of excitation-contraction coupling in frog skeletal muscle fibres.

机译:细胞外钙对青蛙骨骼肌纤维中兴奋-收缩偶联的钙运动的影响。

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摘要

1. The effect of low extracellular free calcium ion concentration ([Ca2+]o) on the transient changes in cytoplasmic [Ca2+] associated with membrane depolarization (Ca2+ transients) was studied on single cut skeletal muscle fibres of the frog, voltage clamped in a double-Vaseline-gap chamber. The Ca2+ transients were monitored with the dye Antipyrylazo III diffused intracellularly. 2. The Ca2+ transients were substantially reduced in external salines with low [Ca2+] (10(-5) M or less and Mg2+ substituted for Ca2+). This decrease was more noticeable at late times during 100 ms or longer depolarizing pulses. 3. The rates of the processes that remove Ca2+ from the myoplasmic solution were not altered by the low [Ca2+]o. This implies that the input flux of Ca2+ into the myoplasm was reduced. 4. The Ca2+ input flux, equal to release flux from the sarcoplasmic reticulum (SR) plus Ca2+ influx via the T-tubule membrane Ca2+ channel, was derived from the Ca2+ transient. In low [Ca2+]o the peak input flux was reduced by 45% (n = 16 fibres) and decayed more rapidly during a depolarizing pulse. 5. The reduction in Ca2+ influx via the T-tubule membrane Ca2+ channel due to the reduced [Ca2+]o could not account for more than 5% of the reduction in Ca2- input flux, which was thus interpreted as an actual reduction of release from the SR. 6. The inward (T-tubular) Ca2+ current was not associated with this effect of extracellular Ca2+ as the effect was voltage independent at high intracellular voltages at which the Ca2+ inward current was strongly voltage dependent. 7. Low [Ca2+]o made Ca2+ release more readily inactivatable; the effect of low [Ca2-]o is best described as a left shift by 29 mV of the 'inactivation curve' of Ca2+ release, relating peak release flux to membrane holding potential. 8. The reduction of Ca2+ release by low [Ca2+]o was not accompanied by changes in the voltage dependence of Ca2+ release or in the threshold voltage for just-detectable release. 9. The results are consistent with a primary effect of Ca2+ on the T-tubular-membrane voltage sensor of excitation-contraction coupling.
机译:1.在青蛙的单切骨骼肌纤维上研究了低细胞外游离钙离子浓度([Ca2 +] o)对与膜去极化相关的细胞质[Ca2 +]瞬态变化(Ca2 +瞬态)的影响。双凡士林间隙室。用在细胞内扩散的染料Antipyrylazo III监测Ca 2+瞬变。 2.在低[Ca2 +](10(-5)M或更少,并且用Mg2 +代替Ca2 +)的外部盐水中,Ca2 +瞬态现象显着减少。在100毫秒或更长时间的去极化脉冲期间,这种下降在后期更为明显。 3.低[Ca2 +] o不会改变从肌浆溶液中去除Ca2 +的过程速率。这意味着减少了Ca2 +进入肌质的输入通量。 4. Ca2 +输入通量等于从肌浆网(SR)释放的通量加上通过T管膜Ca2 +通道的Ca2 +流入量,是由Ca2 +瞬变产生的。在低[Ca2 +] o中,峰值输入通量减少了45%(n = 16根光纤),并且在去极化脉冲期间衰减更快。 5.由于[Ca2 +] o的减少,通过T管膜Ca2 +通道流入的Ca2 +减少不超过Ca2-输入通量减少的5%,因此被解释为释放的实际减少来自SR。 6.内向(T管)Ca2 +电流与细胞外Ca2 +的这种效应无关,因为在高细胞内电压下,该效应与电压无关,而在高细胞内电压下,Ca2 +内向电流强烈依赖电压。 7.低[Ca2 +] o使Ca2 +释放更容易失活;低[Ca2-] o的影响最好描述为Ca2 +释放的“失活曲线”左移29 mV,这将峰值释放通量与膜保持电位相关。 8.低[Ca2 +] o引起的Ca2 +释放减少并没有伴随着Ca2 +释放的电压依赖性或刚刚检测到的释放阈值电压的变化。 9.结果与Ca2 +对激发-收缩耦合的T-管膜电压传感器的主要作用是一致的。

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