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PGC-1α mediates a rapid exercise-induced downregulation of glycogenolysis in rat skeletal muscle

机译:PGC-1α介导运动引起的大鼠骨骼肌糖原分解的快速下调

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摘要

Endurance exercise training can increase the ability to perform prolonged strenuous exercise. The major adaptation responsible for this increase in endurance is an increase in muscle mitochondria. This adaptation occurs too slowly to provide a survival advantage when there is a sudden change in environment that necessitates prolonged exercise. In the present study, we discovered another, more rapid adaptation, a downregulation of expression of the glycogenolytic and glycolytic enzymes in muscle that mediates a slowing of muscle glycogen depletion and lactic acid accumulation. This adaptation, which appears to be mediated by PGC-1α, occurs in response to a single exercise bout and is further enhanced by two additional daily exercise bouts. It is biologically significant, because glycogen depletion and lactic acid accumulation are two of the major causes of muscle fatigue and exhaustion.
机译:耐力运动训练可以增加进行长时间剧烈运动的能力。耐力增加的主要适应因素是肌肉线粒体的增加。当环境突然变化而需要长时间运动时,这种适应发生得太慢,无法提供生存优势。在本研究中,我们发现了另一种更快的适应性,即肌肉中糖原分解和糖酵解酶表达的下调,介导了肌肉糖原消耗和乳酸积累的减慢。这种适应性似乎是由PGC-1α介导的,是对单次运动发作的反应而发生的,并通过另外两次日常运动发作而进一步增强。它具有重要的生物学意义,因为糖原消耗和乳酸积累是肌肉疲劳和疲惫的两个主要原因。

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