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

机译:强心苷对青蛙骨骼肌纤维中兴奋-收缩偶联的影响。

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摘要

1. The effects of digoxin and ouabain on the calcium release flux from the sarcoplasmic reticulum (SR), isometric tension and intramembrane charge movement were studied in voltage clamped skeletal muscle fibres of the frog. 2. Both cardiac glycosides increased both calcium transients and simultaneously recorded tension at all membrane potentials, showing different effects on the peak and on the steady components of the calcium release flux. These effects were attained at an extracellular digoxin concentration of 5 nM and an estimated intracellular ouabain concentration of 1-2 nM. Digoxin and ouabain thus exerted their effects at the same concentration on calcium release in skeletal muscle as previously observed in isolated cardiac-type ryanodine receptor (RyR) calcium release channels. 3. The peak of SR calcium release increased at all voltages, with the largest potentiation at intermediate membrane potentials. This increase in calcium release flux was attained despite an unchanged SR calcium content. The attenuated release rate therefore reflected an increased number of open RyR channels rather than increased SR loading. 4. These effects could be attributed to an increase in calcium release activation and not a decrease in the rate of inactivation. Rather, the rate of inactivation was enhanced at all voltages as expected from the increased calcium concentration in the triadic junction. 5. In contrast, CMA (17 alpha-acetoxy-6-chloro-4, 6-pregnadiene-3,20-dione; 5 microM), a Na(+)-K(+)-ATPase inhibitor with no positive inotropic effects on the heart, neither influenced SR calcium release nor antagonized the effects of ouabain. 6. Both digoxin and ouabain preserved total intramembrane charge apart from a small negative shift in the mid-point voltage and increase in slope factor. 7. Both digoxin and ouabain induced calcium release from heavy SR vesicles at rates comparable to that induced by ryanodine or caffeine. 8. It is concluded that at least part of the inactivating component of SR calcium release involves distinct RyR calcium release channels that resemble the cardiac RyR isoform in its specific sensitivity to cardiac glycosides.
机译:1.研究了地高辛和哇巴因对青蛙电压固定的骨骼肌纤维中钙质网释放的钙通量,等轴测张力和膜内电荷运动的影响。 2.两种强心苷都增加了钙瞬变,同时记录了所有膜电位下的张力,显示了对钙释放通量的峰值和稳定成分的不同影响。这些作用是在细胞外地高辛浓度为5 nM和估计的细胞内哇巴因浓度为1-2 nM时获得的。因此,地高辛和哇巴因以相同的浓度对骨骼肌中的钙释放发挥作用,就像以前在分离的心脏型瑞丹素受体(RyR)钙释放通道中观察到的一样。 3. SR钙释放的峰值在所有电压下均增加,在中等膜电位下具有最大的增强作用。尽管SR钙含量未改变,但仍实现了钙释放通量的增加。因此,衰减的释放速率反映了开放的RyR通道数量增加,而不是SR负荷增加。 4.这些影响可能归因于钙释放活化的增加而不是失活速率的降低。相反,在所有电压下灭活的速率都得到了提高,这是由于三联体接合处钙浓度的增加所预期的。 5.相反,CMA(17α-乙酰氧基-6-氯-4,6-孕二烯-3,20-二酮; 5 microM),Na(+)-K(+)-ATPase抑制剂,无正性变力作用在心脏上,既不影响SR钙的释放,也不拮抗哇巴因的作用。 6.地高辛和哇巴因都保留了总的膜内电荷,除了中点电压的小负移和斜率因子增加外。 7.地高辛和哇巴因都可诱导钙从重质SR囊泡中释放,其释放速率可与ryanodine或咖啡因诱导的释放速率相当。 8.结论是,SR钙释放的至少部分失活成分涉及独特的RyR钙释放通道,该通道在其对强心苷的特异性敏感性方面类似于心脏RyR同工型。

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