Mucolipidosis II and III. The genetic relationships between two disorders of lysosomal enzyme biosynthesis.
- 1 September 1983
- journal article
- research article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 72 (3) , 1016-1023
- https://doi.org/10.1172/jci111025
Abstract
The genetic relationships between the multiple variants of mucolipidosis II (I-cell disease) and mucolipidosis III (pseudo-Hurler polydystrophy) were investigated with a sensitive genetic complementation analysis procedure. These clinically distinct disorders have defects in the synthesis of a recognition marker necessary for the intracellular transport of acid hydrolases into lysosomes. Both disorders are associated with an inherited deficiency of a uridine diphosphate-N-acetyl-glucosamine: lysosomal enzyme precursor N-acetyl-glucosamine-phosphate transferase activity. We had previously shown that both disorders are genetically heterogeneous. Complementation analysis between mucolipidosis II and III fibroblasts indicated an identity of mucolipidosis II with one of the three mucolipidosis III complementation groups (ML IIIA), suggesting a close genetic relationship between these groups. The presence of several instances of complementation within this group suggested an intragenic complementation mechanism. Genetic complementation in heterokaryons resulted in increases in N-acetyl-glucosamine-phosphate transferase activity, as well as in the correction of lysosomal enzyme transport. This resulted in increases in the intracellular levels of several lysosomal enzymes and in the correction of the abnormal electrophoretic mobility pattern of intracellular beta-hexosaminidase. The findings demonstrate that a high degree of genetic heterogeneity exists within these disorders. N-acetyl-glucosamine-phosphate transferase is apparently a multicomponent enzyme with a key role in the biosynthesis and targeting of lysosomal enzymes.Keywords
This publication has 34 references indexed in Scilit:
- I-cell disease: Deficiency of extracellular hydrolase phosphorylationBiochemical and Biophysical Research Communications, 1979
- Urinary lysosomal hydrolases in mucolipidosis II and mucolipidosis IIIBiochemical Journal, 1979
- Phosphohexosyl components of a lysosomal enzyme are recognized by pinocytosis receptors on human fibroblasts.Proceedings of the National Academy of Sciences, 1977
- Dimethyl sulfoxide enhances polyethylene glycol-mediated somatic cell fusionSomatic Cell and Molecular Genetics, 1976
- Mucolipidosis III (pseudo-Hurler polydystrophy): Clinical and laboratory studies in a series of 12 patients.1975
- Genetic heterogeneity in GM1-gangliosidosisNature, 1975
- Studies on the Pathogenetic Mechanism of I-Cell Disease in Cultured FibroblastsPediatric Research, 1974
- A hypothesis for I-cell disease: Defective hydrolases that do not enter lysosomesBiochemical and Biophysical Research Communications, 1972
- I-Cell Disease: Biochemical StudiesPediatric Research, 1972
- I-cell disease: A clinical pictureThe Journal of Pediatrics, 1971