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解偶联蛋白2基因敲除小鼠在高脂饮食后胰岛素分泌能力增强。

Uncoupling protein 2 knockout mice have enhanced insulin secretory capacity after a high-fat diet.

作者信息

Joseph Jamie W, Koshkin Vasilij, Zhang Chen-Yu, Wang Jing, Lowell Bradford B, Chan Catherine B, Wheeler Michael B

机构信息

Department of Medicine, University of Toronto, Ontario, Canada.

出版信息

Diabetes. 2002 Nov;51(11):3211-9. doi: 10.2337/diabetes.51.11.3211.

DOI:10.2337/diabetes.51.11.3211
PMID:12401712
Abstract

Uncoupling protein 2 (UCP2) may act as an important regulator of insulin secretion. In this study, beta-cell function in UCP2-deficient mice was examined after a 45% high-fat diet (HFD) to assess its role during the development of diet-induced type 2 diabetes. HFD-fed UCP2 (-/-) mice have lower fasting blood glucose and elevated insulin levels when compared with wild-type (WT) mice. UCP2 (-/-) mice also have enhanced beta-cell glucose sensitivity compared with WT mice after HFD, a result that is due in part to the deterioration of glucose responsiveness in WT mice. HFD-fed UCP2 (-/-) mice have increased insulin secretory capacity as a result of increased pancreatic beta-cell mass and insulin content per islet. Islets from WT mice exposed to 0.5 mmol/l palmitate for 48 h have significantly reduced mitochondrial membrane potential, ATP concentrations, and glucose responsiveness compared with UCP2 (-/-) islets, suggesting that elevated UCP2 in WT mice increases proton leak and decreases mitochondrial ATP production. Highly increased carnitine palmitoyl transferase-1 gene expression in UCP2 (-/-) mice is suggestive of enhanced fatty acid oxidizing capacity, particularly after HFD stress. These results further establish UCP2 as a component in glucose sensing and suggest a possible new aspect of UCP2 function during the progression of type 2 diabetes.

摘要

解偶联蛋白2(UCP2)可能是胰岛素分泌的重要调节因子。在本研究中,对45%高脂饮食(HFD)喂养后的UCP2基因敲除小鼠的β细胞功能进行了检测,以评估其在饮食诱导的2型糖尿病发生过程中的作用。与野生型(WT)小鼠相比,HFD喂养的UCP2(-/-)小鼠空腹血糖较低,胰岛素水平升高。HFD喂养后,UCP2(-/-)小鼠的β细胞葡萄糖敏感性也比WT小鼠增强,这一结果部分归因于WT小鼠葡萄糖反应性的恶化。HFD喂养的UCP2(-/-)小鼠胰岛素分泌能力增强,这是胰腺β细胞数量增加和每个胰岛胰岛素含量增加的结果。与UCP2(-/-)胰岛相比,暴露于0.5 mmol/l棕榈酸48小时的WT小鼠胰岛线粒体膜电位、ATP浓度和葡萄糖反应性显著降低,这表明WT小鼠中升高的UCP2增加了质子泄漏并降低了线粒体ATP生成。UCP2(-/-)小鼠中肉碱棕榈酰转移酶-1基因表达高度增加,提示脂肪酸氧化能力增强,尤其是在HFD应激后。这些结果进一步证实UCP2是葡萄糖感知的一个组成部分,并提示了UCP2在2型糖尿病进展过程中功能的一个可能新方面。

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