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Insulin stimulates the translocation of Na+/K(+)-dependent ATPase molecules from intracellular stores to the plasma membrane in frog skeletal muscle.

机译:胰岛素刺激青蛙骨骼肌中Na + / K(+)依赖性ATPase分子从细胞内存储转移到质膜。

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摘要

The mechanism of the stimulation of Na+/K+ transport by insulin in frog skeletal muscle was studied. The ouabain-binding capacity in detergent-treated plasma membranes of insulin-exposed muscles was increased 1.9-fold compared with that of controls. Na+/K(+)-ATPase activity was found in an intracellular 'light fraction' (fraction II) prepared by using anion-exchange chromatography. Marker enzyme activities for plasma and Golgi membranes were not detected in this fraction. The specific activity of Na+/K(+)-ATPase in fraction II from insulin-exposed muscles was 58% of that in an identical fraction from control muscles. No significant difference in the protein yield of the plasma membrane preparation was observed between these two groups. In parallel with the decrease in the Na+/K(+)-ATPase activity in fraction II from insulin-exposed muscles, the ouabain-binding capacity in this fraction was also decreased. The addition of saponin to fraction II increased both Na+/K(+)-ATPase activity and ouabain binding, indicating that some of the Na+/K(+)-ATPase is located in sealed vesicles. These findings support the view that insulin stimulates the translocation of Na+/K(+)-ATPase molecules from fraction II to the plasma membrane.
机译:研究了胰岛素刺激青蛙骨骼肌中Na + / K +转运的机理。胰岛素暴露的肌肉中去污剂处理过的质膜中哇巴因的结合能力比对照增加了1.9倍。 Na + / K(+)-ATPase活性在使用阴离子交换色谱法制备的细胞内“轻组分”(组分II)中发现。在此部分中未检测到质膜和高尔基体膜的标记酶活性。 Na + / K(+)-ATPase在暴露于胰岛素的肌肉中的组分II的比活性是对照肌肉在相同组分中的58%。两组之间在质膜制剂的蛋白质产量上没有观察到显着差异。与暴露于胰岛素的肌肉的组分II中的Na + / K(+)-ATPase活性降低同时,该组分中的哇巴因结合能力也降低了。在部分II中添加皂苷增加了Na + / K(+)-ATPase活性和哇巴因的结合,这表明某些Na + / K(+)-ATPase位于密封的囊泡中。这些发现支持这样的观点,即胰岛素刺激Na + / K(+)-ATPase分子从级分II转移到质膜。

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