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Role of NT-PGC-1α on endurance exercise induced mitochondiral biogenesis in rat skeletal muscle. |
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Exerc Sci. 2012;21(4):435-443. DOI: https://doi.org/10.15857/ksep.2012.21.4.435 |
PGC-1α is Dispensable for Exercise-Induced Mitochondrial Biogenesis in Skeletal Muscle Deacetylation of PGC-1α by SIRT1: importance for skeletal muscle function and exercise-induced mitochondrial biogenesis The Role and Regulation of PGC-1α and PGC-1β in Skeletal Muscle Adaptation Exercise-induced PGC-1α transcriptional factors in skeletal muscle PGC-1α modulates denervation-induced mitophagy in skeletal muscle Striated muscle activator of Rho signalling (STARS) is a PGC-1α/oestrogen-related receptor-α target gene and is upregulated in human skeletal muscle after endurance exercise Looking beyond PGC-1α: emerging regulators of exercise-induced skeletal muscle mitochondrial biogenesis and their activation by dietary compounds PGC-1α mediates a rapid, exercise-induced downregulation of glycogenolysis in rat skeletal muscle Coordination of mitochondrial biogenesis by PGC-1α in human skeletal muscle: A re-evaluation Exercise training attenuates aging-associated mitochondrial dysfunction in rat skeletal muscle: Role of PGC-1α |
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