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Increased Skeletal Muscle GLUT4 Expression in Obese Mice After Voluntary Wheel Running Exercise Is Posttranscriptional

机译:自愿轮跑运动后转录后肥胖小鼠骨骼肌GLUT4表达增加。

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摘要

Exercise promotes glucose clearance by increasing skeletal muscle GLUT4-mediated glucose uptake. Importantly, exercise upregulates muscle GLUT4 expression in an insulin-independent manner under conditions of insulin resistance, such as with type 2 diabetes. However, the insulin-independent mechanism responsible for rescued muscle GLUT4 expression is poorly understood. We used voluntary wheel running (VWR) in mice to test the prevailing hypothesis that insulin-independent upregulation of skeletal muscle GLUT4 protein expression with exercise is through increased Glut4 transcription. We demonstrate that 4 weeks of VWR exercise in obese mice rescued high-fat diet–induced decreased muscle GLUT4 protein and improved both fasting plasma insulin and hepatic triacylglyceride levels, but did not rescue muscle Glut4 mRNA. Persistent reduction in Glut4 mRNA suggests that a posttranscriptional mechanism regulated insulin-independent muscle GLUT4 protein expression in response to exercise in lean and obese mice. Reduction of GLUT4 protein in sedentary animals upon treatment with rapamycin revealed mTORC1-dependent GLUT4 regulation. However, no difference in GLUT4 protein expression was observed in VWR-exercised mice treated with either rapamycin or Torin 1, indicating that exercise-dependent regulation on GLUT4 was mTOR independent. The findings provide new insight into the mechanisms responsible for exercise-dependent regulation of GLUT4 in muscle.
机译:运动可通过增加骨骼肌GLUT4介导的葡萄糖摄取来促进葡萄糖清除。重要的是,运动在胰岛素抵抗的情况下(例如2型糖尿病)以非胰岛素依赖的方式上调肌肉GLUT4的表达。但是,负责救援的肌肉GLUT4表达的胰岛素非依赖性机制了解甚少。我们在小鼠中使用了自愿轮转(VWR),以测试普遍的假设,即运动后骨骼肌GLUT4蛋白表达的胰岛素独立上调是通过增加Glut4转录来实现的。我们证明,肥胖小鼠中的4周VWR运动可以挽救高脂饮食诱导的肌肉GLUT4蛋白下降,并改善空腹血浆胰岛素和肝甘油三酯水平,但不能拯救肌肉Glut4 mRNA。 Glut4 mRNA的持续降低表明,转录后机制调节了肥胖和肥胖小鼠运动中胰岛素非依赖性肌肉GLUT4蛋白的表达。用雷帕霉素治疗后久坐动物的GLUT4蛋白减少表明mTORC1依赖的GLUT4调节。但是,在用雷帕霉素或都灵1处理的VWR运动小鼠中,未观察到GLUT4蛋白表达的差异,表明对GLUT4的运动依赖性调节是mTOR依赖性的。这些发现为负责肌肉中GLUT4的运动依赖调节的机制提供了新的见解。

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