首页> 美国卫生研究院文献>The Journal of Physiology >Perchlorate and the relationship between charge movement and contractile activation in frog skeletal muscle fibres.
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Perchlorate and the relationship between charge movement and contractile activation in frog skeletal muscle fibres.

机译:高氯酸盐与青蛙骨骼肌纤维中电荷运动与收缩活化之间的关系。

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摘要

1. The effects of perchlorate ions (1-8 mM) on intramembrane charge movement, myoplasmic Antipyrylazo III Ca2+ transients and contractile activation were examined in voltage-clamped cut skeletal muscle fibres of the frog. 2. Perchlorate shifted both the voltage dependence of charge movement and the rheobase of the strength-duration relation for contraction threshold towards more negative membrane potentials. 3. Both charge movements and myoplasmic Ca2+ transients were much slower at the new rheobase in the presence of perchlorate than in the control solution but there was no change in the threshold amount of charge or in the calculated peak binding of Ca2+ to troponin C. 4. The peak release rate had a steeper voltage dependence than the non-linear charge, but a lower concentration (2 mM) of perchlorate shifted both voltage dependences equally without altering the maxima in the amount of charge and in the rate of Ca2+ release. 5. The voltage dependence of the difference between total charge and charge at the threshold of Ca2+ transients agreed well with the voltage dependence of the rate of Ca2+ release in both the presence and absence of perchlorate. 6. It is concluded that the effect of perchlorate on contractile activation can be accounted for by its action on the intramembrane charge movement responsible for contraction, without significant effects on subsequent Ca2+ release from the sarcoplasmic reticulum or on Ca2+ binding to regulatory sites of troponin C.
机译:1.在电压钳制的青蛙骨骼肌纤维中检查了高氯酸根离子(1-8 mM)对膜内电荷运动,肌质抗pyrylazozo III Ca2 +瞬变和收缩活化的影响。 2.高氯酸盐使电荷运动的电压依赖性和收缩阈值的强度-持续时间关系的rheobase向更多的负膜电位移动。 3.在高氯酸盐存在下,在新的流变碱存在下,电荷移动和肌质Ca2 +瞬变都比对照溶液慢得多,但电荷的阈值量或计算的Ca2 +与肌钙蛋白C的峰值结合没有变化。4峰值释放速率具有比非线性电荷更陡峭的电压依赖性,但是较低的高氯酸盐浓度(2 mM)在不改变电荷量和Ca2 +释放速率最大值的情况下,均等地改变了两个电压依赖性。 5.在高氯酸盐存在和不存在的情况下,总电荷与Ca2 +瞬变阈值处的电荷之间的差的电压依赖性与Ca2 +释放速率的电压依赖性很好地吻合。 6.结论是高氯酸盐对收缩活化的作用可以通过其对负责收缩的膜内电荷运动的作用来解释,而对随后从肌浆网释放的Ca2 +或对钙离子与肌钙蛋白C调控位点的结合没有明显影响。 。

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