Abstract
Endocytosis by cultured human skin fibroblasts of 35SO4(2-)-labelled or [3H]leucine-labelled proteoglycans from fibroblast secretions and of 125I-proteodermatan sulphate from pig skin was quantitatively investigated. The following results were obtained. (1) Core proteins prepared by digestion with chondroitin ABC lyase were at least as efficiently endocytosed as native proteoglycans. Pig skin proteodermatan sulphate was a competitive inhibitor of endocytosis of 35SO4(2-)-labelled proteoglycans. (2) Proteoglycans produced in the presence of tunicamycin and native proteoglycans degraded with endoglycosaminidase H were internalized at a normal rate. Several monosaccharides that can be bound by mammalian lectins were unable to influence the internalization of proteoglycans. Treatment of proteoglycans with neuraminidase, however, resulted in an increased clearance rate. (3) Reductive methylation or acetoacetylation of lysine residues was accompanied by a parallel decrease in the rate of proteoglycan endocytosis. Reversal of acetoacetylation normalized the uptake properties. Endocytosis of native proteoglycans was also reduced in the presence of poly-L-lysine, and this reduction in endocytosis was observed as well with proteoglycans synthesized in the presence of the lysine analogue S-2-aminoethylcysteine. These results suggest that the recognition marker required for receptor-mediated endocytosis of proteodermatan sulphate resides in its protein moiety and involves lysine residues.
MeSH Terms
Amino Acids
Cells, Cultured
Dermatan Sulfate/analogs & derivatives,metabolism
Electrophoresis, Polyacrylamide Gel
Endocytosis/drug effects
Fibroblasts/metabolism
Humans
Kinetics
Polysaccharides/pharmacology
Proteins/metabolism
Proteoglycans/metabolism
Receptors, Cell Surface/metabolism
Chemicals
Amino Acids
Polysaccharides
Proteins
Proteoglycans
Receptors, Cell Surface
proteodermatan sulfate
Dermatan Sulfate
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Glössl J
Schubert-Prinz R
Gregory J D
Damle S P
von Figura K
Kresse H
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