Objective: It is unclear to what extent muscle phosphorylase b kinase (PHK) deficiency is associated with exercise-related symptoms and impaired muscle metabolism, because 1) only four patients have been characterized at the molecular level, 2) reported symptoms have been nonspecific, and 3) lactate responses to ischemic handgrip exercise have been normal. Methods: We studied a 50-year-old man with X-linked PHK deficiency using ischemic forearm and cycle ergometry exercise tests to define the derangement of muscle metabolism. We compared our findings with those in patients with McArdle disease and in healthy subjects. Results: Sequencing of PHKA1 showed a novel pathogenic mutation (c.831G>A) in exon 7. There was a normal increase of plasma ...
McArdle disease is arguably the paradigm of exercise intolerance in humans. This disorder is caused ...
BACKGROUND: Mutations in the PYGM gene encoding skeletal muscle glycogen phosphorylase (GP) cause a ...
McArdle disease is caused by recessive mutations in the gene encoding muscle glycogen phosphorylase ...
OBJECTIVE: It is unclear to what extent muscle phosphorylase b kinase (PHK) deficiency is associated...
Introduction: Glycogen storage disease V (GSDV, McArdle disease) and GSDVII (Tarui disease) are the ...
McArdle disease (glycogen storage disease type V) is caused by inherited deficiency of a key enzyme ...
Biochemical analysis of muscle in a 37-year-old man with exercise intolerance, myalgia, recurrent my...
Carbohydrates are the main source of body energy and they can be stored in the organism in form of g...
McArdle disease (glycogen storage disease type V, OMIM database number 232600) may provide the ultim...
Background McArdle disease is a common metabolic disorder characterized by marked exercise intolera...
McArdle disease is a common metabolic disorder characterized by marked exercise intolerance, prematu...
type V, OMIM database number 232600) may provide the ultimate model of exer-cise intolerance in huma...
McArdle disease (glycogen storage disease Type V; MD) is a metabolic myopathy caused by a deficiency...
Human phosphofructokinase (PFK) exists in tetrameric isozy-mic forms, at least in vitro. Muscle and ...
McArdle's disease is an autosomal recessive glycogenosis due to mutation in the myophosphorylase gen...
McArdle disease is arguably the paradigm of exercise intolerance in humans. This disorder is caused ...
BACKGROUND: Mutations in the PYGM gene encoding skeletal muscle glycogen phosphorylase (GP) cause a ...
McArdle disease is caused by recessive mutations in the gene encoding muscle glycogen phosphorylase ...
OBJECTIVE: It is unclear to what extent muscle phosphorylase b kinase (PHK) deficiency is associated...
Introduction: Glycogen storage disease V (GSDV, McArdle disease) and GSDVII (Tarui disease) are the ...
McArdle disease (glycogen storage disease type V) is caused by inherited deficiency of a key enzyme ...
Biochemical analysis of muscle in a 37-year-old man with exercise intolerance, myalgia, recurrent my...
Carbohydrates are the main source of body energy and they can be stored in the organism in form of g...
McArdle disease (glycogen storage disease type V, OMIM database number 232600) may provide the ultim...
Background McArdle disease is a common metabolic disorder characterized by marked exercise intolera...
McArdle disease is a common metabolic disorder characterized by marked exercise intolerance, prematu...
type V, OMIM database number 232600) may provide the ultimate model of exer-cise intolerance in huma...
McArdle disease (glycogen storage disease Type V; MD) is a metabolic myopathy caused by a deficiency...
Human phosphofructokinase (PFK) exists in tetrameric isozy-mic forms, at least in vitro. Muscle and ...
McArdle's disease is an autosomal recessive glycogenosis due to mutation in the myophosphorylase gen...
McArdle disease is arguably the paradigm of exercise intolerance in humans. This disorder is caused ...
BACKGROUND: Mutations in the PYGM gene encoding skeletal muscle glycogen phosphorylase (GP) cause a ...
McArdle disease is caused by recessive mutations in the gene encoding muscle glycogen phosphorylase ...