McArdle Disease and Exercise Physiology

نویسنده

  • Yu Kitaoka
چکیده

McArdle disease (glycogen storage disease Type V; MD) is a metabolic myopathy caused by a deficiency in muscle glycogen phosphorylase. Since muscle glycogen is an important fuel for muscle during exercise, this inborn error of metabolism provides a model for understanding the role of glycogen in muscle function and the compensatory adaptations that occur in response to impaired glycogenolysis. Patients with MD have exercise intolerance with symptoms including premature fatigue, myalgia, and/or muscle cramps. Despite this, MD patients are able to perform prolonged exercise as a result of the "second wind" phenomenon, owing to the improved delivery of extra-muscular fuels during exercise. The present review will cover what this disease can teach us about exercise physiology, and particularly focuses on the compensatory pathways for energy delivery to muscle in the absence of glycogenolysis.

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Title: Genes and exercise intolerance: Insights from McArdle disease

32 McArdle disease (glycogen storage disease type V) is caused by inherited deficiency of 33 a key enzyme in muscle metabolism, the skeletal-muscle specific isoform of glycogen 34 phosphorylase, ‘myophosphorylase’, which is encoded by the PYGM gene. Here we 35 review the main pathophysiological, genotypic and phenotypic features of McArdle 36 disease and their interactions. To date, moderate-in...

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Genes and exercise intolerance: insights from McArdle disease.

McArdle disease (glycogen storage disease type V) is caused by inherited deficiency of a key enzyme in muscle metabolism, the skeletal muscle-specific isoform of glycogen phosphorylase, "myophosphorylase," which is encoded by the PYGM gene. Here we review the main pathophysiological, genotypic, and phenotypic features of McArdle disease and their interactions. To date, moderate-intensity exerci...

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عنوان ژورنال:

دوره 3  شماره 

صفحات  -

تاریخ انتشار 2014