Excretion-Reuptake Route of β-Hexosaminidase in Normal and I-Cell Disease Cultured Fibroblasts
Open Access
- 1 April 1979
- journal article
- research article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 63 (4), 595-601
- https://doi.org/10.1172/jci109341
Abstract
It has been proposed that in cultured fibroblasts the final packaging of enzymes in lysosomes requires excretion followed by pinocytosis by neighboring cells via a carbohydrate-specific receptor mechanism. It has also been proposed that the abnormally high activity of lysosomal enzymes in the medium of cultured fibroblasts from patients with I-cell disease (mucolipidosis II) results from an altered carbohydrate recognition residue on the enzymes which prevents reuptake into the cells. With β-hexosaminidase as a marker, and competitive inhibition of uptake by 2 mM mannose-6-phosphate, we have determined that only 12% of the total (intra- and extracellular) β-hexosaminidase in normal fibroblasts is channeled through the excretion-reuptake route. After 9 d of exposure to mannose-6-phosphate, normal fibroblast cultures accumulated in the medium only a fraction of the enzyme excreted by I-cell disease fibroblasts in the same period. Furthermore, this minimal loss of enzyme to the medium did not result in a decrease of intracellular enzyme activity. Finally, if the defect in I-cell disease were only because of an impairment of a reuptake mechanism that involves only 12% of the total enzyme, then 88% of the newly synthesized enzyme should be retained by I-cell fibroblasts, resulting in intracellular activity three to nine times higher than that which is observed. These data are consistent with our previous proposal that excessive lysosomal enzyme activity in the medium of I-cell disease fibroblasts results from preferential exocytosis.This publication has 20 references indexed in Scilit:
- The distribution of hydrolytic enzyme activities in human fibroblast cultures and their intercellular transferBiochemical and Biophysical Research Communications, 1978
- Modulation of lysosomal enzyme levels in cultured cellsArchives of Biochemistry and Biophysics, 1978
- Evidence for lysosomal enzyme recognition by human fibroblasts via a phosphorylated carbohydrate moietyBiochemical Journal, 1978
- Correlation of structural features of phosphomannans with their ability to inhibit pinocytosis of human beta-glucuronidase by human fibroblasts.Journal of Biological Chemistry, 1978
- I-cell disease Desialylation of β-hexosaminidase and its effect on uptake by fibroblastsBiochimica et Biophysica Acta (BBA) - General Subjects, 1978
- Recognition and receptor-mediated uptake of a lysosomal enzyme, α-l-iduronidase, by cultured human fibroblastsCell, 1977
- Phosphohexosyl recognition is a general characteristic of pinocytosis of lysosomal glycosidases by human fibroblasts.Journal of Clinical Investigation, 1977
- Phosphohexosyl components of a lysosomal enzyme are recognized by pinocytosis receptors on human fibroblasts.Proceedings of the National Academy of Sciences, 1977
- Cellular transport of lysosomal enzymes: an alternative hypothesisBiochemical Journal, 1977
- A recognition marker required for uptake of a lysosomal enzyme by cultured fibroblastsBiochemical and Biophysical Research Communications, 1974