Abstract
We recently presented data showing that mannose-6-phosphate was a potent competitive inhibitor of pinocytosis of human platelet beta-glucuronidase, and that treatment of "high-uptake" forms of the enzyme with alkaline phosphatase destroyed the high-uptake property of the enzyme without diminishing its catalytic activity. These data indicate that phosphate is a necessary component of the recognition marker on the enzyme for pinocytosis by human fibroblasts, and suggest that the phosphate on high-uptake forms of the enzyme is present as a phosphohexosyl moiety. Results presented here show that mannose-6-phosphate is also a potent inhibitor of pinocytosis of the following enzyme preparations: (a) beta-glucuronidase from human spleen, liver, placenta, and urine; (b) beta-hexosaminidase and beta-galactosidase from human platelets; (c) beta-hexosaminidase from human fibroblast secretions. Alkaline phosphatase treatment of all these enzymes except beta-galactosidase, which was unstable to the incubation conditions and could not be tested, greatly diminished the uptake activity of the enzymes without diminishing their catalytic activity. These results suggest that phosphohexosyl recognition is a general characteristic of pinocytosis of lysosomal glycosidases.
MeSH Terms
Alkaline Phosphatase/pharmacology
Fibroblasts/enzymology,physiology
Galactosidases/metabolism
Glucuronidase/metabolism
Glycoside Hydrolases/metabolism
Hexosaminidases/metabolism
Hexosephosphates/metabolism
Humans
In Vitro Techniques
Lysosomes/enzymology
Mannosephosphates/pharmacology
Pinocytosis
Chemicals
Hexosephosphates
Mannosephosphates
Alkaline Phosphatase
Galactosidases
Glycoside Hydrolases
Hexosaminidases
Glucuronidase
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Kaplan A
Fischer D
Achord D
Sly W
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16 references, click to expand
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