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A metalloproteinase from human rheumatoid synovial fibroblasts that digests connective tissue matrix components.
Abstract:
Human rheumatoid synovial cells in culture stimulated with the conditioned culture medium of rabbit macrophages secrete three distinct latent metalloproteinases. One of them, a proteinase that digests proteoglycan and other connective tissue matrix components, was purified as two active forms after activation with 4-aminophenylmercuric acetate. The two forms were homogeneous on sodium dodecyl sulfate-gel electrophoresis with Mr = 45,000 and Mr = 28,000, whereas the latent precursor was estimated to have Mr = 51,000 by gel permeation chromatography. Both active enzymes had optimal activity at pH 7.5-7.8 and were inhibited by EDTA and 1,10-phenanthroline but not by inhibitors for cysteine, serine, or aspartic proteinases. Removal of Ca2+ from the enzyme solution resulted in a complete loss of activity that could be fully restored by the addition of 1 mM Ca2+. The activity of the apoenzyme was restored by the addition of 0.5 mM Zn2+, 5 mM Co2+, or 5 mM Mn2+ in the presence of Ca2+ but not by each metal ion alone. The identical digestion patterns of reduced, carboxymethylated protein substrates indicated that both active forms of the enzyme have the same substrate specificity. The enzyme degraded cartilage proteoglycans, type I gelatin, type IV collagen, laminin, and fibronectin, and removed the NH2-terminal propeptides from chick type I procollagen. This enzyme may play a role in the normal turnover of the connective tissue matrix as well as in the joint destruction of chronic synovitis.
Insights
Researchers identified a metalloproteinase secreted by rheumatoid synovial cells that degrades connective tissue. This enzyme, active in two forms, may contribute to joint destruction in chronic synovitis.
Area of Science:
- Biochemistry
- Cell Biology
- Rheumatology
Background:
- Rheumatoid synovial cells produce metalloproteinases.
- Macrophage-conditioned medium stimulates metalloproteinase secretion.
Purpose of the Study:
- To isolate and characterize a specific metalloproteinase involved in connective tissue degradation.
- To investigate the enzyme's role in rheumatoid synovitis.
Main Methods:
- Purification of latent metalloproteinase from cultured human rheumatoid synovial cells.
- Activation and characterization of the enzyme's active forms using SDS-PAGE and gel permeation chromatography.
- Enzyme activity assays, including pH optima, inhibitor studies, metal ion dependency, and substrate specificity analysis.
Main Results:
- Two active forms of a metalloproteinase (Mr = 45,000 and 28,000) were purified from a latent precursor (Mr = 51,000).
- The enzyme exhibited optimal activity at pH 7.5-7.8 and required Ca2+ for activity, which could be restored by Zn2+, Co2+, or Mn2+.
- Both active forms demonstrated identical substrate specificity, degrading proteoglycans, collagen, gelatin, laminin, and fibronectin.
Conclusions:
- The characterized metalloproteinase plays a role in the turnover of connective tissue matrix.
- This enzyme may contribute to joint destruction observed in chronic synovitis.