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Overexpression of the ped/pea-15 gene causes diabetes by impairing glucose-stimulated insulin secretion in addition to insulin action

机译:ped / pea-15基因的过度表达除胰岛素作用外还会通过损害葡萄糖刺激的胰岛素分泌而引起糖尿病

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摘要

Overexpression of the ped/pea-15 gene is a common feature of type 2 diabetes. In the present work, we show that transgenic mice ubiquitously overexpressing ped/pea-15 exhibited mildly elevated random-fed blood glucose levels and decreased glucose tolerance. Treatment with a 60% fat diet led ped/pea-15 transgenic mice to develop diabetes. Consistent with insulin resistance in these mice, insulin administration reduced glucose levels by only 35% after 45 min, compared to 70% in control mice. In vivo, insulin-stimulated glucose uptake was decreased by almost 50% in fat and muscle tissues of the ped/pea-15 transgenic mice, accompanied by protein kinase Calpha activation and block of insulin induction of protein kinase Czeta. These changes persisted in isolated adipocytes from the transgenic mice and were rescued by the protein kinase C inhibitor bisindolylmaleimide. In addition to insulin resistance, ped/pea-15 transgenic mice showed a 70% reduction in insulin response to glucose loading. Stable overexpression of ped/pea-15 in the glucose-responsive MIN6 beta-cell line also caused protein kinase Calpha activation and a marked decline in glucose-stimulated insulin secretion. Antisense block of endogenous ped/pea-15 increased glucose sensitivity by 2.5-fold in these cells. Thus, in vivo, overexpression of ped/pea-15 may lead to diabetes by impairing insulin secretion in addition to insulin action.
机译:ped / pea-15基因的过表达是2型糖尿病的共同特征。在目前的工作中,我们表明普遍过量表达ped / pea-15的转基因小鼠表现出适度升高的随机喂养血糖水平和降低的葡萄糖耐量。用60%脂肪饮食进行治疗会使ped / pea-15转基因小鼠患上糖尿病。与这些小鼠中的胰岛素抵抗相一致,与对照组相比,注射胰岛素在45分钟后仅将葡萄糖水平降低了35%,而在对照组中仅为70%。在体内,Ped / pea-15转基因小鼠的脂肪和肌肉组织中胰岛素刺激的葡萄糖摄取降低了近50%,并伴有蛋白激酶Calpha激活和蛋白激酶Czeta胰岛素诱导的阻滞。这些变化持续存在于转基因小鼠的分离的脂肪细胞中,并通过蛋白激酶C抑制剂双吲哚基马来酰亚胺得以挽救。除了胰岛素抵抗外,Ped / pea-15转基因小鼠对葡萄糖负荷的胰岛素反应也降低了70%。 ped / pea-15在葡萄糖反应性MIN6β细胞系中的稳定过表达也引起蛋白激酶Calpha活化和葡萄糖刺激的胰岛素分泌显着下降。在这些细胞中,内源性ped / pea-15的反义区使葡萄糖敏感性提高了2.5倍。因此,在体内,除了胰岛素作用外,ped / pea-15的过表达还可能通过损害胰岛素分泌而导致糖尿病。

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