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Muscle glycogen and metabolic regulation

机译:肌肉糖原和代谢调节

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Muscle glycogen is an important fuel for contracting skeletal muscle during prolonged strenuous exercise, and glycogen depletion has been implicated in muscle fatigue. It is also apparent that glycogen availability can exert important effects on a range of metabolic and cellular processes. These processes include carbohydrate, fat and protein metabolism during exercise, post-exercise glycogen resynthesis, excitation-contraction coupling, insulin action and gene transcription. For example, low muscle glycogen is associated with reduced muscle glycogenolysis, increased glucose and NEFA uptake and protein degradation, accelerated glycogen resynthesis, impaired excitation-contraction coupling, enhanced insulin action and potentiation of the exercise-induced increases in transcription of metabolic genes. Future studies should identify the mechanisms underlying, and the functional importance of, the association between glycogen availability and these processes.
机译:肌肉糖原是长时间剧烈运动中收缩骨骼肌的重要燃料,糖原消耗与肌肉疲劳有关。同样显而易见的是,糖原的可用性可以对一系列代谢和细胞过程产生重要影响。这些过程包括运动过程中的碳水化合物,脂肪和蛋白质的代谢,运动后糖原的再合成,兴奋-收缩偶联,胰岛素作用和基因转录。例如,低肌糖原与肌肉糖原分解减少,葡萄糖和NEFA摄取增加和蛋白质降解,糖原再合成加快,兴奋收缩耦合受损,胰岛素作用增强以及运动引起的代谢基因转录增强有关。未来的研究应确定糖原可用性与这些过程之间关联的潜在机制和功能重要性。

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