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首页> 外文期刊>The biochemical journal >Effects of detergents on Na+ + K+-dependent ATPase activity in plasma-membrane fractions prepared from frog muscles. Studies of insulin action on Na+ and K+ transport
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Effects of detergents on Na+ + K+-dependent ATPase activity in plasma-membrane fractions prepared from frog muscles. Studies of insulin action on Na+ and K+ transport

机译:清洁剂对青蛙肌肉制备的血浆膜中Na + + K +依赖性ATPase活性的影响。胰岛素对Na +和K +转运的作用研究

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pThe increase in Na+/K+ transport activity in skeletal muscles exposed to insulin was analysed. Plasma-membrane fractions were prepared from frog (Rana catesbeiana) skeletal muscles, and examination of the Na,K-ATPase (Na+ + K+-dependent ATPase) activity showed that it was insensitive to ouabain. In contrast, plasma-membrane fractions prepared from ouabain-pretreated muscles, by the same procedures, showed extremely low Na,K-ATPase activity. On adding saponin to the membrane suspension, the Na,K-ATPase activity increased, according to the detergent concentration. The maximum activity was about twice the control value, at 0.33 mg of saponin/mg of protein. Thus saponin makes vesicle membranes leaky, allowing ouabain in assay solutions to reach receptors on the inner surface of vesicles. Addition of insulin to saponin-treated membrane suspensions had no effect on the Na,K-ATPase activity, whereas the maximum activity of Na,K-ATPase in whole muscles was stimulated by exposure to insulin. The results show that the stimulation of Na+/K+ transport by insulin is not directly due to insulin binding to receptors on the cell surface, but rather support the view that the increase in the Na,K-ATPase induced by insulin requires an alteration of intracellular events./p
机译:>分析了暴露于胰岛素的骨骼肌中Na + / K +转运活性的增加。从青蛙(Rana catesbeiana)骨骼肌制备血浆膜组分,对Na,K-ATPase(Na + + K +依赖性ATPase)活性的检查表明它对哇巴因不敏感。相反,通过哇巴因预处理的肌肉通过相同的程序制备的血浆膜组分显示极低的Na,K-ATPase活性。在膜悬浮液中添加皂苷后,Na,K-ATPase活性随洗涤剂浓度的增加而增加。最大活性约为对照值的两倍,为0.33 mg皂苷/ mg蛋白质。因此,皂苷会使囊泡膜渗漏,从而使化验溶液中的哇巴因到达囊泡内表面上的受体。将胰岛素添加到皂素处理过的膜悬浮液中对Na,K-ATPase活性没有影响,而通过暴露于胰岛素刺激了整个肌肉中Na,K-ATPase的最大活性。结果表明,胰岛素刺激Na + / K +转运并非直接由于胰岛素与细胞表面受体结合而引起,而是支持以下观点:胰岛素诱导的Na,K-ATPase的增加需要改变细胞内事件。

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