Literature DB >> 17705025

High frequency of missense mutations in glycogen storage disease type VI.

N J Beauchamp1, J Taybert, M P Champion, V Layet, P Heinz-Erian, A Dalton, M S Tanner, E Pronicka, M J Sharrard.   

Abstract

Deficiency of liver glycogen phosphorylase in glycogen storage disease (GSD) type VI results in a reduced ability to mobilize glucose from glycogen. Six mutations of the PYGL gene, which encodes the liver isoform of the enzyme, have been identified in the literature. We have characterized eight patients from seven families with GSD type VI and identified 11 novel PYGL gene defects. The majority of the mutations were missense, resulting in the substitution of highly conserved residues. These could be grouped into those that were predicted to affect substrate binding (p.V456M, p.E673K, p.S675L, p.S675T), pyridoxal phosphate binding (p.R491C, p.K681T), or activation of glycogen phosphorylase (p.Q13P) or that had an unknown effect (p.N632I and p.D634H). Two mutations were predicted to result in null alleles, p.R399X and [c.1964_1969inv6;c.1969+1_+4delGTAC]. Only 7 of the 23 (30%) reported PYGL alleles carry nonsense, splice site or frameshift mutations compared to 68-80% of affected alleles of the highly homologous muscle glycogen phosphorylase gene, PYGM, that underlie McArdle disease. There was heterogeneity in the clinical symptoms observed in affected individuals. These varied from hepatomegaly and subclinical hypoglycaemia, to severe hepatomegaly with recurrent severe hypoglycaemia and postprandial lactic acidosis. We conclude that deficiency of liver glycogen phosphorylase is predominantly the result of missense mutations affecting enzyme activity. There are no common mutations and the severity of clinical symptoms varies significantly.

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Year:  2007        PMID: 17705025     DOI: 10.1007/s10545-007-0499-9

Source DB:  PubMed          Journal:  J Inherit Metab Dis        ISSN: 0141-8955            Impact factor:   4.982


  25 in total

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Journal:  Mol Genet Metab       Date:  2003-06       Impact factor: 4.797

4.  Mutations in the liver glycogen phosphorylase gene (PYGL) underlying glycogenosis type VI.

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8.  Molecular heterogeneity of myophosphorylase deficiency (McArdle's disease): a genotype-phenotype correlation study.

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Authors:  Claudio Bruno; Denise Cassandrini; Andrea Martinuzzi; Antonio Toscano; Maurizio Moggio; Lucia Morandi; Serena Servidei; Tiziana Mongini; Corrado Angelini; Olimpia Musumeci; Giacomo P Comi; Costanza Lamperti; Massimiliano Filosto; Federico Zara; Carlo Minetti
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9.  Novel PYGL mutations in Chinese children leading to glycogen storage disease type VI: two case reports.

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