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Phenotype consequences of myophosphorylase dysfunction: insights from the McArdle mouse model

机译:肌磷酸化酶功能障碍的表型后果:McArdle小鼠模型的见解

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This is the first study to analyse the effect of muscle glycogen phosphorylase depletion in metabolically different muscle types. In McArdle mice, muscle glycogen phosphorylase is absent in both oxidative and glycolytic muscles. In McArdle mice, the glycogen debranching enzyme (catabolic) is increased in oxidative muscles, whereas the glycogen branching enzyme (anabolic) is increased in glycolytic muscles. In McArdle mice, total glycogen synthase is decreased in both oxidative and glycolytic muscles, whereas the phosphorylated inactive form of the enzyme is increased in both oxidative and glycolytic enzymes. In McArdle mice, glycogen content is higher in glycolytic muscles than in oxidative muscles. Additionally, in all muscles analysed, the glycogen content is higher in males than in females. The maximal endurance capacity of the McArdle mice is significantly lower compared to heterozygous and wild-type mice.
机译:这是第一项分析肌肉糖原磷酸化酶耗竭在代谢不同类型肌肉中的作用的研究。在McArdle小鼠中,氧化性和糖酵解性肌肉均不存在肌肉糖原磷酸化酶。在McArdle小鼠中,氧化性肌肉中的糖原解支酶(分解代谢)增加,而糖酵解性肌肉中的糖原支化酶(合成代谢)增加。在McArdle小鼠中,氧化和糖酵解肌肉中的总糖原合酶均降低,而氧化和糖酵解酶中磷酸化的无活性形式均增加。在McArdle小鼠中,糖酵解肌肉中的糖原含量高于氧化性肌肉。另外,在所有分析过的肌肉中,男性的糖原含量高于女性。与杂合和野生型小鼠相比,McArdle小鼠的最大耐力明显较低。

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