首页> 外文期刊>American Journal of Physiology >PGC-1alpha plays a functional role in exercise-induced mitochondrial biogenesis and angiogenesis but not fiber-type transformation in mouse skeletal muscle.
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PGC-1alpha plays a functional role in exercise-induced mitochondrial biogenesis and angiogenesis but not fiber-type transformation in mouse skeletal muscle.

机译:PGC-1alpha在运动诱导的线粒体生物发生和血管生成中起功能性作用,但不在小鼠骨骼肌中进行纤维类型转化。

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Endurance exercise stimulates peroxisome proliferator-activated receptor gamma coactivator-1alpha (PGC-1alpha) expression in skeletal muscle, and forced expression of PGC-1alpha changes muscle metabolism and exercise capacity in mice. However, it is unclear if PGC-1alpha is indispensible for endurance exercise-induced metabolic and contractile adaptations in skeletal muscle. In this study, we showed that endurance exercise-induced expression of mitochondrial enzymes (cytochrome oxidase IV and cytochrome c) and increases of platelet endothelial cell adhesion molecule-1 (PECAM-1, CD31)-positive endothelial cells in skeletal muscle, but not IIb-to-IIa fiber-type transformation, were significantly attenuated in muscle-specific Pgc-1alpha knockout mice. Interestingly, voluntary running effectively restored the compromised mitochondrial integrity and superoxide dismutase 2 (SOD2) protein expression in skeletal muscle in Pgc-1alpha knockout mice. Thus, PGC-1alpha plays a functional role in endurance exercise-induced mitochondrial biogenesis and angiogenesis, but not IIb-to-IIa fiber-type transformation in mouse skeletal muscle, and the improvement of mitochondrial morphology and antioxidant defense in response to endurance exercise may occur independently of PGC-1alpha function. We conclude that PGC-1alpha is required for complete skeletal muscle adaptations induced by endurance exercise in mice.
机译:耐力运动会刺激骨骼肌中过氧化物酶体增殖物激活的受体γcoactivator-1alpha(PGC-1alpha)的表达,而PGC-1alpha的强制表达会改变小鼠的肌肉代谢和运动能力。但是,尚不清楚PGC-1alpha对于骨骼肌耐力运动诱导的代谢和收缩适应是否必不可少。在这项研究中,我们显示了耐力运动诱导的骨骼肌中线粒体酶(细胞色素氧化酶IV和细胞色素c)的表达以及血小板内皮细胞粘附分子1(PECAM-1,CD31)阳性内皮细胞的表达增加,但不是IIb到IIa纤维类型的转化在肌肉特异性Pgc-1alpha基因敲除小鼠中明显减弱。有趣的是,自愿跑步有效地恢复了受损的线粒体完整性和Pgc-1alpha基因敲除小鼠骨骼肌中的超氧化物歧化酶2(SOD2)蛋白表达。因此,PGC-1alpha在耐力运动诱导的线粒体生物发生和血管生成中起功能性作用,但在小鼠骨骼肌中不发挥IIb到IIa纤维类型的转化作用,并且耐力运动中线粒体形态和抗氧化防御的改善可能发生独立于PGC-1alpha功能。我们得出的结论是,PGC-1alpha是小鼠耐力运动诱导的骨骼肌完全适应所必需的。

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