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电生性钠-碳酸氢根共转运体NBCe1-A和NBCe1-B在大鼠胰岛细胞中的表达

Expression of the electrogenic Na+-HCO3--cotransporters NBCe1-A and NBCe1-B in rat pancreatic islet cells.

作者信息

Soyfoo Muhammad S, Bulur Nurdan, Virreira Myrna, Louchami Karim, Lybaert Pascale, Crutzen Raphael, Perret Jason, Delporte Christine, Roussa Eleni, Thevenod Frank, Best Len, Yates Allen P, Malaisse Willy J, Sener Abdullah, Beauwens Renaud

机构信息

Laboratory of Biological Chemistry and Nutrition, Université Libre de Bruxelles, Brussels, Belgium.

出版信息

Endocrine. 2009 Jun;35(3):449-58. doi: 10.1007/s12020-009-9175-1. Epub 2009 Apr 18.

Abstract

It was recently proposed that, in rat pancreatic islets, the production of bicarbonate accounts for the major fraction of the carbon dioxide generated by the oxidative catabolism of nutrient insulin secretagogues. In search of the mechanism(s) supporting the membrane transport of bicarbonate, the possible role of the electrogenic Na(+)-HCO(3) (-)-cotransporters NBCe1-A and NBCe1-B in rat pancreatic islet cells was investigated. Expression of NBCe1-A and NBCe1-B in rat pancreatic islet cells was documented by RT-PCR, western blotting, and immunocytochemistry. The latter procedure suggested a preferential localization of NBCe1-B in insulin-producing cells. Tenidap (3-100 microM), previously proposed as an inhibitor of NBCe1-A-mediated cotransport in proximal tubule kidney cells, caused a concentration-related inhibition of glucose-stimulated insulin secretion. It also inhibited 2-ketoisocaproate-induced insulin release and to a relatively lesser extent, the secretory response to L: -leucine. Tenidap (50-100 microM) also inhibited the metabolism of D: -glucose in isolated islets, increased (22)Na net uptake by dispersed islet cells, lowered intracellular pH and provoked hyperpolarization of plasma membrane in insulin-producing cells. This study thus reveals the expression of the electrogenic Na(+)-HCO(3) (-)-cotransporters NBCe1-A and NBCe1-B in rat pancreatic islet cells, and is consistent with the participation of such transporters in the process of nutrient-stimulated insulin secretion.

摘要

最近有人提出,在大鼠胰岛中,碳酸氢盐的产生占营养性胰岛素促分泌剂氧化分解代谢产生的二氧化碳的主要部分。为了寻找支持碳酸氢盐膜转运的机制,研究了电中性Na(+)-HCO(3) (-)共转运体NBCe1-A和NBCe1-B在大鼠胰岛细胞中的可能作用。通过RT-PCR、蛋白质印迹法和免疫细胞化学法记录了NBCe1-A和NBCe1-B在大鼠胰岛细胞中的表达。后一种方法表明NBCe1-B在胰岛素产生细胞中优先定位。替尼达普(3-100 microM),先前被认为是近端肾小管细胞中NBCe1-A介导的共转运的抑制剂,导致葡萄糖刺激的胰岛素分泌呈浓度依赖性抑制。它还抑制2-酮异己酸诱导的胰岛素释放,并且在相对较小的程度上抑制对L-亮氨酸的分泌反应。替尼达普(50-100 microM)还抑制分离胰岛中D-葡萄糖的代谢,增加分散胰岛细胞对(22)Na的净摄取,降低细胞内pH值,并引起胰岛素产生细胞的质膜超极化。因此,本研究揭示了电中性Na(+)-HCO(3) (-)共转运体NBCe1-A和NBCe1-B在大鼠胰岛细胞中的表达,并且与这些转运体参与营养刺激的胰岛素分泌过程一致。

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