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Long-term Endurance Training Increases Expression of Slow Twitch Myosin Heavy Chain and Mitochondria Biogenesis in Mouse Skeletal Muscle |
Jin-Ho Koh, Hyun-Gyu Suh, Ki-Jin Kim |
Exerc Sci. 2016;25(1):43-49. Published online 2016 February 29 DOI: https://doi.org/10.15857/ksep.2016.25.1.43 |
Long-term Endurance Training Increases Expression of Slow Twitch Myosin Heavy Chain and Mitochondria Biogenesis in Mouse Skeletal Muscle Protein kinase C activity regulates slow myosin heavy chain 2 gene expression in slow lineage skeletal muscle fibers Loss of myostatin expression alters fiber-type distribution and expression of myosin heavy chain isoforms in slow- and fast-type skeletal muscle Rapid Determination of Myosin Heavy Chain Expression in Rat, Mouse, and Human Skeletal Muscle Using Multicolor Immunofluorescence Analysis Work overload induced changes in fast and slow skeletal muscle myosin heavy chain gene expression Myosin heavy chain expression and atrophy in rat skeletal muscle during transition from cardiac hypertrophy to heart failure Control of slow myosin heavy chain 2 gene expression by glycogen synthase kinase activity in skeletal muscle fibers Identification and changes in the pattern of expression of slow-skeletal-muscle-like myosin heavy chains in a developing fast muscle Nerve-dependent changes in skeletal muscle myosin heavy chain after experimental denervation and cross-reinnervation and in a demyelinating mouse model of Charcot-Marie-Tooth disease type 1A Skeletal muscle tissue engineering: A maturation model promoting long-term survival of myotubes, structural development of the excitation–contraction coupling apparatus and neonatal myosin heavy chain expression |
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