Degradation of connective tissue matrices by macrophages. I. Proteolysis of elastin, glycoproteins, and collagen by proteinases isolated from macrophages.
Open Access
- 1 November 1980
- journal article
- research article
- Published by Rockefeller University Press in The Journal of Experimental Medicine
- Vol. 152 (5) , 1340-1357
- https://doi.org/10.1084/jem.152.5.1340
Abstract
We have investigated the ability of neutral and lysosomal enzymes of mouse macrophages to degrade the insoluble extracellular matrices secreted by smooth muscle cells, endothelial cells, and fibroblasts. Matrices produced by smooth muscle cells contained glycoproteins, elastin, and collagens, but matrices of endothelial cells and fibroblasts contained no elastin. Sequential enzyme digestion of residual matrix revealed that plasmin, a product of macrophage plasminogen activation, degraded 50-70% of the glycoprotein in the matrices but did not degrade the elastin or the collagens. Purified macrophage elastase degraded glycoprotein and elastin components but had no effect on the collagens. The rate of elastin degradation by macrophage elastase was decreased in the presence of the glycoproteins. In contrast, human granulocyte elastase effectively degraded the matrix glycoproteins, elastin, and, to a lesser extent, collagens, Mammalian collagenase degraded only collagens. Conditioned medium from resident and inflammatory macrophages, containing mixtures of the secreted proteinases, degraded the glycoprotein and elastin components of the matrices. However, conditioned medium was less effective in degrading matrix than comparable amounts of purified macrophage elastase because > 90% of the elastase in the medium was in a latent form. Inclusion of plasminogen in the assays accelerated degradation. In the presence of plasminogen, glycoproteins were degraded readily by medium from P388D1, pyran copolymer-, thioglycollate-, and periodate-elicited macrophages and, to a lesser extent, by medium from endotoxin-elicited and resident macrophages; medium from P388D1, thioglycollate-, and periodate-elicited macrophages was most effective in elastin degradation, and resident, endotoxin-elicited and pyran copolymer-elicited macrophages degraded almost no elastin. The macrophage cathepsins D and B degraded all the matrix components at an optimum pH of 5.5 and acted with the secreted neutral proteinases to degrade the connective tissue macromolecules to amino acids and oligopeptides. These data indicate that macrophages at inflammatory sites contain and secrete proteolytic enzymes that could degrade the extracellular matrix.This publication has 46 references indexed in Scilit:
- The synthesis of connective tissue protein in smooth muscle cellsBiochimica et Biophysica Acta (BBA) - Nucleic Acids and Protein Synthesis, 1976
- Elastase secretion by stimulated macrophages. Characterization and regulation.The Journal of Experimental Medicine, 1975
- Secretion of a specific collagenase by stimulated macrophages.The Journal of Experimental Medicine, 1975
- INDUCTION OF MACROPHAGE PLASMINOGEN ACTIVATOR BY ENDOTOXIN STIMULATION AND PHAGOCYTOSISThe Journal of Experimental Medicine, 1974
- SECRETION OF PLASMINOGEN ACTIVATOR BY STIMULATED MACROPHAGESThe Journal of Experimental Medicine, 1974
- The growth and development of the rat aorta. II. Changes in nucleic acid and scleroprotein content.1972
- Sequential degradation and phagocytosis of heterologous elastin.1970
- INVOLVEMENT OF MACROPHAGES IN COLLAGEN RESORPTIONThe Journal of cell biology, 1969
- The hydroxyproline of elastinBiochimica et Biophysica Acta (BBA) - Protein Structure, 1969
- THE ELASTIC FIBERThe Journal of cell biology, 1969