Human sulfite oxidase R160Q: Identification of the mutation in a sulfite oxidase-deficient patient and expression and characterization of the mutant enzyme
Open Access
- 26 May 1998
- journal article
- case report
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 95 (11) , 6394-6398
- https://doi.org/10.1073/pnas.95.11.6394
Abstract
Sulfite oxidase catalyzes the terminal reaction in the degradation of sulfur amino acids. Genetic deficiency of sulfite oxidase results in neurological abnormalities and often leads to death at an early age. The mutation in the sulfite oxidase gene responsible for sulfite oxidase deficiency in a 5-year-old girl was identified by sequence analysis of cDNA obtained from fibroblast mRNA to be a guanine to adenine transition at nucleotide 479 resulting in the amino acid substitution of Arg-160 to Gln. Recombinant protein containing the R160Q mutation was expressed in Escherichia coli, purified, and characterized. The mutant protein contained its full complement of molybdenum and heme, but exhibited 2% of native activity under standard assay conditions. Absorption spectroscopy of the isolated molybdenum domains of native sulfite oxidase and of the R160Q mutant showed significant differences in the 480- and 350-nm absorption bands, suggestive of altered geometry at the molybdenum center. Kinetic analysis of the R160Q protein showed an increase in Km for sulfite combined with a decrease in kcat resulting in a decrease of nearly 1,000-fold in the apparent second-order rate constant kcat/Km. Kinetic parameters for the in vitro generated R160K mutant were found to be intermediate in value between those of the native protein and the R160Q mutant. Native sulfite oxidase was rapidly inactivated by phenylglyoxal, yielding a modified protein with kinetic parameters mimicking those of the R160Q mutant. It is proposed that Arg-160 attracts the anionic substrate sulfite to the binding site near the molybdenum.Keywords
This publication has 15 references indexed in Scilit:
- Molecular Basis of Sulfite Oxidase Deficiency from the Structure of Sulfite OxidaseCell, 1997
- Site-directed Mutagenesis of Recombinant Sulfite OxidasePublished by Elsevier ,1996
- The Molybdenum Site of Sulfite Oxidase: A Comparison of Wild-Type and the Cysteine 207 to Serine Mutant Using X-ray Absorption SpectroscopyJournal of the American Chemical Society, 1996
- Identification by mutational analysis of four critical residues in the molybdenum cofactor domain of eukaryotic nitrate reductaseFEBS Letters, 1995
- [29] MolybdenumPublished by Elsevier ,1988
- Separation and quantitation of oxypurines by isocratic high-pressure liquid chromatography: Application to xanthinuria and the Lesch-Nyhan syndromeBiochemical Medicine, 1983
- Structural and metabolic relationship between the molybdenum cofactor and urothione.Proceedings of the National Academy of Sciences, 1982
- Sulfite Oxidase (Sulfite: Ferricytochrome C Oxidoreductase)**The IUB commission on enzyme nomenclature assigned the numbers 1.8.2.1 and 1.8.3.1 to sulfite:ferricytochrome c oxidoreductase and sulfite:oxygen oxidoreductase, respectively. Since it is now established that both activities are expressions of the same enzyme and since ferricytochrome c is the physiological electron acceptor the number 1.8.2.1 adequately describes the enzyme.Published by Elsevier ,1980
- A simple screening test for sulfite oxidase deficiency: Detection of urinary thiosulfate by a modification of sörbo's methodClinica Chimica Acta; International Journal of Clinical Chemistry, 1979
- Sulfite Oxidase DeficiencyNew England Journal of Medicine, 1977