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首页> 外文期刊>Acta physiologica >Muscle type-specific response of PGC-1 alpha and oxidative enzymes during voluntary wheel running in mouse skeletal muscle.
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Muscle type-specific response of PGC-1 alpha and oxidative enzymes during voluntary wheel running in mouse skeletal muscle.

机译:PGC-1α和氧化酶的肌肉类型特异性反应在小鼠骨骼肌中自动轮转过程中。

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AIM: It is generally accepted that endurance exercise increases the expression of peroxisome proliferator-activated receptor gamma coactivator-1alpha (PGC-1alpha), which governs the expression of oxidative metabolic enzymes. A previous report demonstrated that the regulation of mitochondrial protein expression in skeletal muscles in response to cold exposure depends on muscle fibre type. Cold exposure and endurance exercise are both metabolic challenges that require adjustments in mitochondrial energy metabolism, we hypothesized that the exercise-induced increase in oxidative enzymes and PGC-1alpha expression is higher in fast-type than in slow-type muscle. METHODS: Female ICR mice were individually housed in cages equipped with running wheel for 1, 2, 4, 6 or 8 weeks. The soleus, plantaris (PLA) and tibialis anterior (TA) muscles were then prepared from each mouse. The expression levels of PGC-1alpha, mitochondrial proteins and GLUT4 were evaluated by Western blotting. RESULTS: The expression level ofPGC-1alpha was increased only in the PLA muscle. Furthermore, the expression levels of all mitochondrial proteins and GLUT4 in the PLA muscle were increased. In the TA muscle, although there was no increase in PGC-1alpha expression, the expression levels of mitochondrial proteins and GLUT4 were increased. CONCLUSIONS: These results suggest that muscle type-specific responses occur during endurance exercise, and that the increase in PGC-1alpha expression is not the only factor that promotes oxidative capacity as a result of endurance exercise.
机译:目的:人们普遍认为,耐力运动会增加过氧化物酶体增殖物激活受体γcoactivator-1alpha(PGC-1alpha)的表达,该表达决定着氧化代谢酶的表达。先前的一份报告表明,响应冷暴露,骨骼肌中线粒体蛋白表达的调节取决于肌纤维类型。冷暴露和耐力运动都是需要调整线粒体能量代谢的代谢挑战,我们假设运动引起的氧化酶增加和PGC-1α表达在快速型肌肉中高于在慢速型肌肉中。方法:将雌性ICR小鼠单独饲养在装有跑轮的笼中1、2、4、6或8周。然后从每只小鼠制备比目鱼肌,plant肌(PLA)和胫前肌(TA)。通过蛋白质印迹法评估PGC-1α,线粒体蛋白和GLUT4的表达水平。结果:PGC-1α的表达水平仅在PLA肌肉中增加。此外,PLA肌肉中所有线粒体蛋白和GLUT4的表达水平均升高。在TA肌肉中,尽管PGC-1alpha表达没有增加,但线粒体蛋白和GLUT4的表达水平却增加了。结论:这些结果表明,在耐力运动过程中会发生肌肉类型特异性反应,而PGC-1α表达的增加并不是耐力运动促进氧化能力的唯一因素。

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