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首页> 外文期刊>The Journal of Endocrinology: The Journal of the Society for Endocrinology >Enhanced insulin secretion and improved glucose tolerance in mice with homozygous inactivation of the Na+K+2Cl? co-transporter 1
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Enhanced insulin secretion and improved glucose tolerance in mice with homozygous inactivation of the Na+K+2Cl? co-transporter 1

机译:Na + K + 2Cl2纯合失活的小鼠体内胰岛素分泌增强和葡萄糖耐量提高。辅助运输车1

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摘要

The intracellular chloride concentration ([Cl~(?)]_(i)) in β-cells plays an important role in glucose-stimulated plasma membrane depolarisation and insulin secretion. [Cl~(?)]_(i) is maintained above equilibrium in β-cells by the action of Cl~(?) co-transporters of the solute carrier family 12 group A ( Slc12a ). β-Cells express Slc12a1 and Slc12a2 , which are known as the bumetanide (BTD)-sensitive Na~(+)-dependent K~(+)2Cl~(?) co-transporters 2 and 1 respectively. We show that mice lacking functional alleles of the Slc12a2 gene exhibit better fasting glycaemia, increased insulin secretion in response to glucose, and improved glucose tolerance when compared with wild-type (WT). This phenomenon correlated with increased sensitivity of β-cells to glucose in vitro and with increased β-cell mass. Further, administration of low doses of BTD to mice deficient in Slc12a2 worsened their glucose tolerance, and low concentrations of BTD directly inhibited glucose-stimulated insulin secretion from β-cells deficient in Slc12a2 but expressing intact Slc12a1 genes. Together, our results suggest for the first time that the Slc12a2 gene is not necessary for insulin secretion and that its absence increases β-cell secretory capacity. Further, impairment of insulin secretion with BTD in vivo and in vitro in islets lacking Slc12a2 genes unmasks a potential new role for Slc12a1 in β-cell physiology.
机译:β细胞中的细胞内氯浓度([Cl〜(?)] _(i))在葡萄糖刺激的质膜去极化和胰岛素分泌中起重要作用。 [Cl〜(?)] _(i)通过溶质载体家族12组A(Slc12a)的Cl〜(?)共转运子的作用保持在β细胞中高于平衡的状态。 β细胞表达Slc12a1和Slc12a2,它们分别称为对布美他尼(BTD)敏感的Na〜(+)依赖性K〜(+)2Cl〜(?)共转运蛋白2和1。我们显示,与野生型(WT)相比,缺乏Slc12a2基因功能性等位基因的小鼠表现出更好的空腹血糖,对葡萄糖的响应增加了胰岛素的分泌和改善的葡萄糖耐量。该现象与体外β细胞对葡萄糖的敏感性增加和β细胞质量增加有关。此外,向缺乏Slc12a2的小鼠施用低剂量的BTD会使它们的葡萄糖耐受性恶化,并且低浓度的BTD直接抑制了来自Slc12a2缺陷但表达完整Slc12a1基因的β细胞的葡萄糖刺激的胰岛素分泌。在一起,我们的结果首次表明Slc12a2基因对于胰岛素分泌不是必需的,并且它的缺失会增加β细胞的分泌能力。此外,缺乏Slc12a2基因的胰岛体内和体外BTD对胰岛素分泌的损害揭示了Slc12a1在β细胞生理中的潜在新作用。

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