Everts M E, Clausen T
Institute of Physiology, University of Aarhus, Denmark.
Acta Physiol Scand. 1992 Aug;145(4):353-62. doi: 10.1111/j.1748-1716.1992.tb09375.x.
Experiments were performed on isolated rat soleus (slow-twitch) and extensor digitorum longus (EDL) (fast-twitch) muscle of 4-week-old rats. In soleus muscle, electrical simulation at 2 Hz for 5 min increased the ouabain-suppressible 86Rb+ uptake by 138%, without significant changes in intracellular Na+ content or Na+/K+ ratio. In EDL muscle, the ouabain-suppressible 86Rb+ uptake was stimulated by only 58%, whereas intracellular Na+ content and Na+/K+ ratio were increased by around 70%. Na(+)-loading of the muscles by exposure to K(+)-free or K(+)-Ca(2-)-Mg(2+)-free buffer stimulated the ouabain-suppressible 86Rb+ uptake in the two muscles to roughly the same extent, but in EDL muscle this was associated with a more than twofold larger increase in Na+/K+ ratio. When the Na+ influx was increased by exposure to veratridine similar results were obtained. Graded variation in intracellular Na+ content was achieved by exposure to monensin. In soleus muscle, a 25% increase in intracellular Na+/K+ ratio resulted in a doubling of the ouabain-suppressible 86Rb+ uptake, whereas a doubling of the Na(+)-K+ transport rate in EDL muscle required a 140% increase in Na+/K+ ratio. The results indicate that in soleus muscle the Na+/K+ pump is much more sensitive to changes in intracellular Na+ content than in EDL muscle. This might explain the larger activation of the Na(+)-K+ pump in slow-twitch muscle during electrical stimulation and might be of significance for the activation of the Na(+)-K+ pump in vivo during work.
对4周龄大鼠的离体比目鱼肌(慢肌)和趾长伸肌(EDL,快肌)进行了实验。在比目鱼肌中,以2 Hz频率电刺激5分钟可使哇巴因抑制的86Rb+摄取增加138%,而细胞内Na+含量或Na+/K+比值无显著变化。在EDL肌中,哇巴因抑制的86Rb+摄取仅增加58%,而细胞内Na+含量和Na+/K+比值增加约70%。通过暴露于无钾或无K+-Ca2+-Mg2+缓冲液使肌肉Na+负荷增加,可使两块肌肉中哇巴因抑制的86Rb+摄取受到大致相同程度的刺激,但在EDL肌中,这与Na+/K+比值增加两倍以上有关。当通过暴露于藜芦碱使Na+内流增加时,也得到了类似的结果。通过暴露于莫能菌素实现细胞内Na+含量的分级变化。在比目鱼肌中,细胞内Na+/K+比值增加25%导致哇巴因抑制的86Rb+摄取增加一倍,而在EDL肌中,Na+-K+转运速率增加一倍需要Na+/K+比值增加140%。结果表明,与EDL肌相比,比目鱼肌中的Na+/K+泵对细胞内Na+含量变化更为敏感。这可能解释了电刺激期间慢肌中Na+-K+泵的更大激活,并且可能对工作期间体内Na+-K+泵的激活具有重要意义。