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Biomedical subjects

E Quak

Publications and source records attributed to E Quak.

3 recordsLinked to original sources

Mutation analysis in glutaric aciduria type I.

Glutaric aciduria type 1 (GA1), resulting from the genetic deficiency of glutaryl-CoA dehydrogenase (GDH), is a relatively common cause of acute metabolic brain damage in infants. Encephalopathic crises may be prevented by carnitine supplementation and diet, but diagnosis can be difficult as some patients do not show the typical excretion of large amounts of glutaric and 3-hydroxyglutaric acids in the urine. We present a rapid and efficient denaturing gradient gel electrophoresis (DGGE) method for the identification of mutations in the glutaryl-CoA dehydrogenase (GCDH) gene that may be used for the molecular diagnosis of GA1 in a routine setting. Using this technique, we identified mutations on both alleles in 48 patients with confirmed GDH deficiency, while no mutations were detected in other patients with clinical suspicion of GA1 but normal enzyme studies. There was a total of 38 different mutations; 27 mutations were found in single patients only, and 21 mutations have not been previously reported. Fourteen mutations involved hypermutable CpG sites. The commonest GA1 mutation in Europeans is R402W, which accounts for almost 40% of alleles in patients of German origin. GCDH gene haplotypes were determined through the analysis of polymorphic markers in all families, and three CpG mutations were associated with different haplotypes, possibly reflecting independent recurrence. The high sensitivity of the DGGE method allows the rapid and cost efficient diagnosis of GA1 in instances where enzyme analyses are not available or feasible, despite the marked heterogeneity of the disease.

Brain Diseases, Metabolic, Inborn↗

Large heterozygous deletion masquerading as homozygous missense mutation: a pitfall in diagnostic mutation analysis.

The clinical use of molecular analyses in recessive disorders relies on the exact characterization of both mutant alleles in the affected patient. This can be problematic when only part of the gene is examined or when relevant DNA alterations are not recognized by standard methods. We present a child in whom phenylketonuria was apparently caused by homozygosity for the mutation E390G in exon 11 of the phenylalanine hydroxylase (PAH) gene. However, the clinical severity of the disease was not quite as mild as expected, the mutation was not identified in the father despite confirmed paternity, and the paternal allele showed a highly unusual pattern of polymorphic markers in the PAH gene. Presence of a large deletion involving exons 9, 10 and 11 of the phenylalanine hydroxylase gene was confirmed by long-range PCR. Diagnostic DNA analyses should include a comprehensive examination of the whole relevant gene in the patient and confirmation of carrier status in both parents.

DNA Mutational Analysis↗