McArdle disease is a rare autosomal recessive disorder of the muscle glycogen metabolism caused by mutations in the muscle glycogen phosphorylase gene. Until now, a total number of 11 different mutations in the coding region or splice sites of the myophosphorylase gene have been identified. In contrast to a wealth of data on the RNA and protein level, little information is available on the genomic sequence of the corresponding gene. To facilitate molecular diagnosis of McArdle disease, we reinvestigated the genomic structure of the myophosphorylase gene and sequenced about 9.8 kilobases (kb) on the genomic level. By choosing 14 intronic primer pairs, we were able to amplify the complete human coding sequence as well as the adjacent splice s...
McArdle’s Disease, or Glycogen Storage Disease Type V, is the result of a deficiency in one of...
McArdle disease is a disorder of muscle glycogen metabolism caused by mutations in the PYGM gene, en...
Background McArdle disease is a common metabolic disorder characterized by marked exercise intolera...
McArdle disease or Glycogen Storage Disease type V (GSD V; myophosphorylase deficiency; MIM 232600) ...
This study aimed to identify PYGM mutations in patients with McArdle disease from Turkey by next gen...
Contains fulltext : 57353.pdf (publisher's version ) (Closed access)We report on 8...
McArdle disease is an autosomal recessive disorder caused by inherited deficiency of the muscle isof...
Numerous biomedical advances have been made since Carl and Gerty Cori discovered the enzyme phosphor...
We identified a novel stop codon mutation in the myophosphorylase gene in a Greek patient with typic...
Using direct sequencing and restriction fragment length polymorphism analysis, we identified two nov...
McArdle disease is an autosomal recessive disorder caused by inherited deficiency of the muscle isof...
We have analyzed muscle biopsy specimens from 48 patients with biochemically proven phosphorylase de...
Nearly 35% of all mutations identified in the muscle glycogen phosphorylase gene (PYGM) in patients ...
McArdle disease is a common metabolic disorder characterized by marked exercise intolerance, prematu...
Objective: Methods: Results: Conclusions: To identify pathogenic mutant alleles of the PYGM gene in ...
McArdle’s Disease, or Glycogen Storage Disease Type V, is the result of a deficiency in one of...
McArdle disease is a disorder of muscle glycogen metabolism caused by mutations in the PYGM gene, en...
Background McArdle disease is a common metabolic disorder characterized by marked exercise intolera...
McArdle disease or Glycogen Storage Disease type V (GSD V; myophosphorylase deficiency; MIM 232600) ...
This study aimed to identify PYGM mutations in patients with McArdle disease from Turkey by next gen...
Contains fulltext : 57353.pdf (publisher's version ) (Closed access)We report on 8...
McArdle disease is an autosomal recessive disorder caused by inherited deficiency of the muscle isof...
Numerous biomedical advances have been made since Carl and Gerty Cori discovered the enzyme phosphor...
We identified a novel stop codon mutation in the myophosphorylase gene in a Greek patient with typic...
Using direct sequencing and restriction fragment length polymorphism analysis, we identified two nov...
McArdle disease is an autosomal recessive disorder caused by inherited deficiency of the muscle isof...
We have analyzed muscle biopsy specimens from 48 patients with biochemically proven phosphorylase de...
Nearly 35% of all mutations identified in the muscle glycogen phosphorylase gene (PYGM) in patients ...
McArdle disease is a common metabolic disorder characterized by marked exercise intolerance, prematu...
Objective: Methods: Results: Conclusions: To identify pathogenic mutant alleles of the PYGM gene in ...
McArdle’s Disease, or Glycogen Storage Disease Type V, is the result of a deficiency in one of...
McArdle disease is a disorder of muscle glycogen metabolism caused by mutations in the PYGM gene, en...
Background McArdle disease is a common metabolic disorder characterized by marked exercise intolera...