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Tyrosinaemia Type I — an Update

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Book cover Journal of Inherited Metabolic Disease

Summary

Tyrosinaemia type I is a recessively inherited disorder caused by a deficiency of fumarylacetoacetase (FAH), the last enzyme in tyrosine degradation. The presumed toxic agents are fumaryl- and maleylacetoacetate which are converted to succinylacetone (SA), a metabolite found in increased amounts in urine and plasma of the patients. The major clinical features are progressive liver damage and renal tubular defects with hypophosphataemic rickets. Renal tubular dysfunctions with secondary rickets may be lacking altogether, even in chronic patients. Hepatocellular carcinoma is a major cause of death in the chronic form. Diagnosis of the disorder is made by assay of SA in urine and serum and by determination of FAH in lymphocytes or fibroblasts. Prenatal diagnosis is performed by SA assay in amniotic fluid supernatant and FAH analysis in cultured amniotic fluid cells or chorionic villus material. Presence of a ‘pseudodeficiency’ gene for FAH prevents prenatal diagnosis by enzyme analysis in some families, and this gene also precludes identification of heterozygotes outside tyrosinaemia families. Immunoblot analyses show that acute patients and some chronic patients lack immunoreactive FAH protein. cDNA probes for FAH have been developed and several polymorphisms related to the FAH gene have been reported, which may allow prenatal diagnosis in families with complex genotypes. The gene for FAH has been mapped to chromosome 15 q23–q25. Liver transplantation is the ultimate treatment; most patients continue to excrete SA in urine after liver transplantation and therefore there is a possibility of kidney disease after transplantation.

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References

  • Agsteribbe, E., van Faassen, H., Hartog, M. V., Reversma, T., Taanman, J.-W., Pannekoek, H., Evers, R. F., Welling, G. M. and Berger, R. Nucleotide sequence of cDNA encoding human fumarylacetoacetase. Nucleic Acids Res. 18 (1990) 1887

    Article  PubMed  CAS  Google Scholar 

  • Berger, R., van Faassen, H. and Smith, G. P. A. Biochemical studies on the enzymatic deficiencies of hereditary tyrosinemia. Clin. Chim. Acta 134 (1983) 129–141

    Article  PubMed  CAS  Google Scholar 

  • Berger, R., van Faassen, H., Taanman, J. W., de Vries, H. and Agsteribbe, E. Type I tyrosinemia: lack of immunologically detectable fumarylacetoacetase enzyme protein in tissues and cell extracts. Pediatr. Res. 22 (1987) 394–398

    Article  PubMed  CAS  Google Scholar 

  • Berger, B., van Faassen, H., van der Berg, I., Agsteribbe, E. and Wiemer, E. Different types of mutation in the chronic and acute forms of type I tyrosinemia. Pediatr. Res. 24 (1988) 266

    Article  Google Scholar 

  • Berube, D., Phaneuf, D., Tanguay, R. M. and Gagne, R. Assignment of the fumarylacetoacetate hydrolase gene to chromosome 15g23–15825. Cytogenet. Cell Genet. 51 (1989) 962

    Google Scholar 

  • Day, D. L., Letourneau, J. G., Allan, B. T., Sharp, H. L., Ascher, N., Dehner, L. P. and Thompson, W. M. Hepatic regenerating nodules in hereditary tyrosinemia. Am. J. Roentgenol. 149 (1987) 391–393

    Article  CAS  Google Scholar 

  • De Almeida, I. T., Leandro, P. P., Silva, M. F. B., Silveira, C., Da Silva, A., Salazar De. Sousa, J. and Duran, M. Tyrosinaemia type I with normal levels of plasma tyrosine. J. Inher. Metab. Dis. 13 (1990) 305–307

    Article  PubMed  Google Scholar 

  • Dehner, L. P., Snover, D. C., Sharp, H. L., Ascher, N., Nakhleh, R. and Day, D. L. Hereditary tyrosinemia type I (chronic form): pathologic findings in the liver. Hum. Pathol. 20 (1989) 149–158

    Article  PubMed  CAS  Google Scholar 

  • Edwards, M. A., Green, A., Colli, A. and Rylance, G. Tyrosinaemia type I and hyperthrophic obstructive cardiomyopathy. Lancet 1 (1987) 1437–1438

    Article  PubMed  CAS  Google Scholar 

  • Flye, M. W., Riely, C. A., Hainline, B. E., Sassa, S., Gusberg, R. J., Blakemore, K. J., Barwick, K. W. and Horwich, A. L. The effects of early treatment of hereditary tyrosinemia type I in infancy by orthotopic liver transplantation. Transplantation 49 (1990) 916–921

    Article  PubMed  CAS  Google Scholar 

  • Goldsmith, L. A. and Labrege, C. Tyrosinemia and related disorders. In Scriver, C. R., Beaudet, A. L., Sly, W. S. and Valle, D. (eds.) The Metabolic Basis of Inherited Disease, McGraw-Hill, New York, 1989, pp. 547–562

    Google Scholar 

  • Goulden, K. J., Moss, M. A., Cole, D. E. C., Tithecott, G. A. and Crocker, J. F. S. Pitfalls in the initial diagnosis of tyrosinemia: three case reports and a review of the literature. Clin. Biochem. 20 (1987) 207–212

    Article  PubMed  CAS  Google Scholar 

  • Jakobs, C., Lambertus, D., Wikkerink, B., Kok, R. M., de Jong, A. P. J. M. and Wadman, S. K. Stable isotope dilution analysis of succinylacetone using electron capture negative ion mass fragmentography: an accurate approach to the pre-and neonatal diagnosis of hereditary tyrosinemia type I. Clin. Chim. Acta 223 (1988) 223–232

    Article  Google Scholar 

  • Kvittingen, E. A. and Brodtkorb, E. The pre-and post-natal diagnosis of tyrosinemia type I and the detection of the carrier state by assay of fumarylacetoacetase. Scand. J. Clin. Lab. Invest. 46 Suppl. 184 (1986) 35–40

    CAS  Google Scholar 

  • Kvittingen, E. A., Leonard, J. V., Pettit, B. R. and King, G. S. Concentrations of succinylacetone after homogentisate and tyrosine loading in healthy individuals with low fumarylacetoacetase activity. Clin. Chim. Acta 152 (1985) 271–279

    Article  PubMed  CAS  Google Scholar 

  • Kvittingen, E. A., Jellum, E., Stokke, O., Flatmark, A., Bergan, A., S¢dal, G., Halvorsen, S., Schrumpf, E. and Gjone, E. Liver transplantation in a 23-year-old tyrosinaemia patient: effects on the renal tubular dysfunction. J. Inher. Metab. Dis. 9 (1986) 216–224

    Article  PubMed  CAS  Google Scholar 

  • Kvittingen, E. A., Rootwelt, H., van Dam, T., van Faassen, H. and Berger, R. Hereditary tyrosinemia type I — lack of correlation between clinical findings and amount of immunoreactive fumarylacetoacetase protein. Vth International Congress on Inborn Errors of Metabolism, Asilomar, California, 1-5 June 1990

    Google Scholar 

  • Kvittingen, E. A., Talseth, T., Halvorsen, S., Jakobs, C., Hovig, T. and Flatmark, A. Renal failure in adult patients with hereditary tyrosinaemia type I. J. Inher. Metab. Dis. 14 (1991) 53–62

    Article  PubMed  CAS  Google Scholar 

  • Lindblad, B., Lindstedt, S. and Steen, G. On the enzymic defects in hereditary tyrosinemia. Proc. Natl. Acad. Sci. USA 84 (1977) 4641–4645

    Article  Google Scholar 

  • Lindblad, B., Friden, J., Greter, J., Holme, E., Lindstedt, S. and Sj¢steen, C. Treatment of hereditary tyrosinaemia (fumarylacetoacetase deficiency) by enzyme substitution. J. Inher. Metab. Dis. 9 Suppl. 2 (1986) 257–261

    Article  Google Scholar 

  • Mieles, L. A., Esquivel, C. O., van Thiel, D. H., Koneru, B., Makowka, L., Tzakis, A. G. and Starzl, T. E. Liver transplantation for tyrosinemia. A review of 10 cases from the University of Pittsburgh. Digest. Dis. Sci. 35 (1990) 153–157

    Article  PubMed  CAS  Google Scholar 

  • Mitchell, G., Larochelle, J., Lambert, M., Michaud, J., Grenier, A., Ogier, H., Gauthier, M., Lacroix, J., Vanasse, M., Larbrisseau, A., Paradis, K., Weber, A., Lefevre, Y., Melancon, S. and Dallaire, L. Neurologic crises in hereditary tyrosinemia. N. Engl. J. Med. 322 (1990) 432–437

    Article  PubMed  CAS  Google Scholar 

  • Nicole, L. M., Valet, J. P., Laberge, C. and Tanguay, R. M. Purification of mRNA coding for the enzyme deficient in hereditary tyrosinemia, fumarylacetoacetate hydrolase. Can. J. Biochem. Cell Biol. 64 (1986) 489–493

    Article  Google Scholar 

  • Paradis, K., Weber, A., Seidman, E., Larochelle, J., Lenaerts, C. and Roy, C. C. Evaluation of tyrosinemic children for liver transplantation. Pediatr. Res. 27 (1990) 538 (abstract)

    Google Scholar 

  • Rootwelt, H., Kvittingen, E. A., Agsteribbe, E., Hartog, M. V., van Faassen, H. and Berger, R. The fumarylacetoacetase gene: Characterization of restriction fragment length polymorphisms and identification of haplotypes — possibility for prenatal diagnosis in families with compound genotypes for the tyrosinemia and `pseudodeficiency’ genes. Vth International Congress on Inborn Errors of Metabolism, Asilomar, California, 1–5 June 1990

    Google Scholar 

  • Schierbeek, H. and Berger, R. Determination of succinylacetone and succinylacetoacetate in physiological samples as the common product 5(3)-methyl-3(5)-isoxasole propionic acid using an isotope dilution method and mass spectrometry. Clin. Chim. Acta 184 (1989) 243–250

    Article  PubMed  CAS  Google Scholar 

  • S¢vik, O., Kvittingen, E. A., Steen-Johnson, J. and Halvorsen, S. Hereditary tyrosinemia of chronic course without rickets or renal tubular dysfunction. Acta Paedatr. Scand. 79 (1990) 1063–1068

    Article  Google Scholar 

  • Tanguay, R. T., Laberge, C., Lescault, T., Valet, J. P., Duband, J. L. and Quenneville, Y. Molecular basis of hereditary tyrosinemia: Proof of the primary defect by Western blotting. In Scott, W., Amhad, F., Black, S., Schultz, J. and Whelan, W. J. (eds.) Advances in Gene Technology: Human Genetic Disorders, ICSU Short Reports 1 (1984) 250–251

    Google Scholar 

  • Tuchman, M., Freese, D. K., Sharp, H. L., Ramnaraine, M. L. R., Ascher, N. and Bloomer, J. P. Contribution of extrahepatic tissues to biochemical abnormalities in hereditary tyrosinernia type I: study of three patients after liver transplantation. J. Pediatr. 110 (1987) 399–403

    Article  PubMed  CAS  Google Scholar 

  • Van Spronsen, F. J., Berger, R., Smit, G. P. A., De Klerk, J. B. C., Duran, M., Bijleveld, C. M. A., Van Faassen, H., Slooff, M. J. H. and Heymans, H. S. A. Tyrosinaemia type I: Orthotopic liver transplantation as the only definite answer to a metabolic as well as an oncological problem. J. Inher. Metab. Dis. 12 Suppl. 2 (1989) 339–342

    Article  Google Scholar 

  • Weinberg, A. G., Mize, C. E. and Worthen, H. G. The occurrence of hepatoma in the chronic form of hereditary tyrosinemia. J. Pediatr. 88 (1976) 434–438

    Article  PubMed  CAS  Google Scholar 

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© 1991 Springer Science+Business Media Dordrecht

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Kvittingen, E.A. (1991). Tyrosinaemia Type I — an Update. In: Harkness, R.A., Pollitt, R.J., Addison, G.M. (eds) Journal of Inherited Metabolic Disease. Springer, Dordrecht. https://doi.org/10.1007/978-94-011-9749-6_13

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  • DOI: https://doi.org/10.1007/978-94-011-9749-6_13

  • Publisher Name: Springer, Dordrecht

  • Print ISBN: 978-0-7923-8982-8

  • Online ISBN: 978-94-011-9749-6

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