Abstract
Binding studies with cells that had been permeabilized with saponin indicate that alveolar macrophages have an intracellular pool of mannose-specific binding sites which is about 4-fold greater than the cell surface pool. Monensin, a carboxylic ionophore which mediates proton movement across membranes, has no effect on binding of ligand to macrophages but blocks receptor-mediated uptake of 125I-labelled beta-glucuronidase. Inhibition of uptake was concentration- and time-dependent. Internalization of receptor-bound ligand, after warming to 37 degrees C, was unaffected by monensin. Moreover, internalization of ligand in the presence of monensin resulted in an intracellular accumulation of receptor-ligand complexes. The monensin effect was not dependent on the presence of ligand, since incubation of macrophages with monensin at 37 degrees C without ligand resulted in a substantial decrease in cell-surface binding activity. However, total binding activity, measured in the presence of saponin, was much less affected by monensin treatment. Removal of monensin followed by a brief incubation at pH 6.0 and 37 degrees C, restored both cell-surface binding and uptake activity. Fractionation experiments indicate that ligands enter a low-density (endosomal) fraction within the first few minutes of uptake, and within 20 min transfer to the lysosomal fraction has occurred. Monensin blocks the transfer from endosomal to lysosomal fraction. Lysosomal pH, as measured by the fluorescein-dextran method, was increased by monensin in the same concentration range that blocked ligand uptake. The results indicate that monensin blockade of receptor-mediated endocytosis of mannose-terminated ligands by macrophages is due to entrapment of receptor-ligand complexes and probably receptors in the pre-lysosomal compartment. The inhibition is linked with an increase in the pH of acid intracellular vesicles.
MeSH Terms
Animals
Binding Sites
Biological Transport/drug effects
Centrifugation, Density Gradient
Furans/pharmacology
Glucuronidase/antagonists & inhibitors
In Vitro Techniques
Lectins, C-Type
Ligands
Lysosomes/metabolism
Macrophages/metabolism
Mannose/metabolism
Mannose Receptor
Mannose-Binding Lectins
Models, Biological
Monensin/pharmacology
Rabbits
Rats
Receptors, Cell Surface/drug effects,metabolism
Serum Albumin/metabolism
Chemicals
Furans
Lectins, C-Type
Ligands
Mannose Receptor
Mannose-Binding Lectins
Receptors, Cell Surface
Serum Albumin
mannose-bovine serum albumin conjugate
Monensin
Glucuronidase
Mannose
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Wileman T
Boshans R L
Schlesinger P
Stahl P
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