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首页> 外文期刊>The Journal of general physiology >Insulin Stimulates Transepithelial Sodium Transport by Activation of a Protein Phosphatase That Increases Na-K Atpase Activity in Endometrial Epithelial Cells
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Insulin Stimulates Transepithelial Sodium Transport by Activation of a Protein Phosphatase That Increases Na-K Atpase Activity in Endometrial Epithelial Cells

机译:胰岛素通过激活蛋白质磷酸酶来刺激Transepithelial钠转运,所述蛋白质磷酸酶增加子宫内膜上皮细胞中Na-K ATP酶活性

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The objective of this study was to investigate the effects of insulin and insulin-like growth factor I on transepithelial Na+ transport across porcine glandular endometrial epithelial cells grown in primary culture. Insulin and insulin-like growth factor I acutely stimulated Na+ transport two- to threefold by increasing Na+-K+ ATPase transport activity and basolateral membrane K+ conductance without increasing the apical membrane amiloride-sensitive Na+ conductance. Long-term exposure to insulin for 4 d resulted in enhanced Na+ absorption with a further increase in Na+-K+ ATPase transport activity and an increase in apical membrane amiloride-sensitive Na+ conductance. The effect of insulin on the Na+-K+ ATPase was the result of an increase in Vmax for extracellular K+ and intracellular Na+, and an increase in affinity of the pump for Na+. Immunohistochemical localization along with Western blot analysis of cultured porcine endometrial epithelial cells revealed the presence of α-1 and α-2 isoforms, but not the α-3 isoform of Na+-K+ ATPase, which did not change in the presence of insulin. Insulin-stimulated Na+ transport was inhibited by hydroxy-2-naphthalenylmethylphosphonic acid tris-acetoxymethyl ester [HNMPA-(AM)3], a specific inhibitor of insulin receptor tyrosine kinase activity, suggesting that the regulation of Na+ transport by insulin involves receptor autophosphorylation. Pretreatment with wortmannin, a specific inhibitor of phosphatidylinositol 3–kinase as well as okadaic acid and calyculin A, inhibitors of protein phosphatase activity, also blocked the insulin-stimulated increase in short circuit and pump currents, suggesting that activation of phosphatidylinositol 3–kinase and subsequent stimulation of a protein phosphatase mediates the action of insulin on Na+-K+ ATPase activation.
机译:本研究的目的是探讨胰岛素和胰岛素样生长因子I对在初级培养中生长的猪腺体子宫内膜上皮细胞跨越胰岛素的Na +运输的影响。胰岛素和胰岛素样生长因子I通过增加Na + -K + ATP酶传输活性和基底外膜K + +电导而致敏感的Na +输送2至三倍,而不增加顶端膜氨基胺敏感Na +电导。长期暴露于4d的胰岛素导致增强的Na +吸收,进一步增加Na + -k + AtP酶传输活性,并且增加了顶端膜阿米利啶敏感性Na +电导的增加。胰岛素对Na + -K + ATP酶的影响是用于细胞外K +和细胞内Na +的Vmax的结果,以及泵对Na +的亲和力的增加。免疫组织化学定位随着培养的猪子宫内膜上皮细胞的蛋白质印迹分析显示α-1和α-2同种型的存在,但不是Na + -K + AtP酶的α-3同种型,其在胰岛素的存在下没有变化。胰岛素刺激的Na +转运被羟基-2-萘基甲基膦酸三乙酰氧基乙酯[HNMPA-(AM)3]抑制了胰岛素受体酪氨酸激酶活性的特异性抑制剂,表明胰岛素的Na +运输的调节涉及受体自磷酸化。用Wortmannin的预处理,磷脂酰肌醇3-激酶以及冈田酸和钙霉素A的特异性抑制剂,蛋白质磷酸酶活性的抑制剂,也阻断了短路和泵电流的胰岛素刺激的增加,表明磷脂酰肌醇3-激酶的激活和随后对蛋白质磷酸酶的刺激介导胰岛素对Na + -K + ATP酶活化的作用。

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