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UCP-mediated energy depletion in skeletal muscle increases glucose transport despite lipid accumulation and mitochondrial dysfunction

机译:尽管脂质积累和线粒体功能障碍,UCP介导的骨骼肌能量耗尽增加了葡萄糖运输

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摘要

To address the potential role of lipotoxicity and mitochondrial function in insulin resistance, we studied mice with high-level expression of uncoupling protein-1 in skeletal muscle (UCP-H mice). Body weight, body length, and bone mineral density were decreased in UCP-H mice compared with wild-type littermates. Forelimb grip strength and muscle mass were strikingly decreased, whereas muscle triglyceride content was increased fivefold in UCP-H mice. Electron microscopy demonstrated lipid accumulation and large mitochondria with abnormal architecture in UCP-H skeletal muscle. ATP content and key mitochondrial proteins were decreased in UCP-H muscle. Despite mitochondrial dysfunction and increased intramyocellular fat, fasting serum glucose was 22% lower and insulin-stimulated glucose transport 80% higher in UCP-H animals.
机译:为了解决脂毒性和线粒体功能在胰岛素抵抗中的潜在作用,我们研究了骨骼肌(UCP-H小鼠)中具有高级别蛋白-1的高水平表达的小鼠。 与野生型凋落物相比,UCP-H小鼠中的体重,体长和骨矿物密度降低。 前肢握力和肌肉质量显着下降,而肌肉甘油三酯含量增加了UCP-H小鼠的五倍。 电子显微镜显示脂质积累和大型线粒体,具有UCP-H骨骼肌的异常结构。 在UCP-H肌肉中降低了ATP含量和关键线粒体蛋白。 尽管线粒体功能障碍和脑内骨质脆性增加,但腹部血清葡萄糖在UCP-H动物中较低,胰岛素刺激葡萄糖输送80%。

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