| Literature DB >> 12110122 |
Gillian Murphy1, Vera Knäuper, Susan Atkinson, George Butler, William English, Mike Hutton, Jan Stracke, Ian Clark.
Abstract
The role of matrix metalloproteinases in the degradative events invoked in the cartilage and bone of arthritic joints has long been appreciated and attempts at the development of proteinase inhibitors as potential therapeutic agents have been made. However, the spectrum of these enzymes orchestrating connective tissue turnover and general biology is much larger than anticipated. Biochemical studies of the individual members of the matrix metalloproteinase family are now underway, ultimately leading to a more detailed understanding of the function of their domain structures and to defining their specific role in cellular systems and the way that they are regulated. Coupled with a more comprehensive and detailed study of proteinase expression in different cells of joint tissues during the progress of arthritic diseases, it will be possible for the future development and application of highly specific proteinase inhibitors to be directed at specific key cellular events.Entities:
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Year: 2002 PMID: 12110122 PMCID: PMC3240148 DOI: 10.1186/ar572
Source DB: PubMed Journal: Arthritis Res ISSN: 1465-9905
Matrix metalloproteinases (MMPs) and their substrates
| MMP | Enzyme | Known substrates | ||
|---|---|---|---|---|
| MMP-1 | Interstitial collagenase (collagenase-1) | 55,000 | 45,000 | Collagens I, II, III, VII, VIII and X, gelatin, aggrecan, versican, proteoglycan link protein, casein, α1-proteinase inhibitor, α2-M, pregnancy zone protein, ovostatin, nidogen, MBP, proTNF, L-selectin, proMMP-2, proMMP-9 |
| MMP-2 | Gelatinase A | 72,000 | 66,000 | Collagens I, IV, V, VII, X, XI and XIV, gelatin, elastin, fibronectin, aggrecan, versican, proteoglycan link protein, MBP, proTNF, α1-proteinase inhibitor, proMMP-9, proMMP-13 |
| MMP-3 | Stromelysin-1 | 57,000 | 45,000 | Collagens III, IV, IX and X, gelatin, aggrecan, versican, perlecan, nidogen, proteoglycan link protein, fibronectin, laminin, elastin, casein, fibrinogen, antithrombin-III, α2M, ovostatin, α1-proteinase inhibitor, MBP, proTNF, proMMP-1, proMMP-7, proMMP-8, proMMP-9, proMMP-13 |
| MMP-7 | Matrilysin-1 (PUMP-1) | 28,000 | 19,000 | Collagens IV and X, gelatin, aggrecan, proteoglycan link protein, fibronectin, laminin, entactin, elastin, casein, transferrin, MBP, α1-proteinase inhibitor, proTNF, proMMP-1, proMMP-2, proMMP-9 |
| MMP-8 | Neutrophil collagenase | 75,000 | 58,000 | Collagens I, II, III, V, VII, VIII and X, gelatin, aggrecan, α1-proteinase (collagenase-2) inhibitor, α2-antiplasmin, fibronectin |
| MMP-9 | Gelatinase B | 92,000 | 86,000 | Collagens IV, V, VII, X and XIV, gelatin, elastin, aggrecan, versican, proteoglycan link protein, fibronectin, nidogen, α1-proteinase inhibitor, MBP, proTNF |
| MMP-10 | Stromelysin-2 | 57,000 | 44,000 | Collagens III, IV and V, gelatin, casein, aggrecan, elastin, proteoglycan link protein, fibronectin, proMMP-1, proMMP-8 |
| MMP-11 | Stromelysin-3 | 51,000 | 44,000 | α1-proteinase inhibitor |
| MMP-12 | Macrophage metalloelastase | 54,000 | 45,000/ 22,000 | Collagen IV, gelatin, elastin, α1-proteinase inhibitor, fibronectin, vitronectin, laminin, proTNF, MBP |
| MMP-13 | Collagenase-3 | 60,000 | 48,000 | Collagens I, II, III and IV, gelatin, plasminogen activator inhibitor 2, aggrecan, perlecan, tenascin |
| MMP-14 | MT1-MMP | 66,000 | 56,000 | Collagens I, II and III, gelatin, casein, elastin, fibronectin, laminin B chain, vitronectin, aggrecan, dermatan sulfate proteoglycan, MMP-2, MMP-13, proTNF |
| MMP-15 | MT2-MMP | 72,000 | 60,000 | proMMP-2, gelatin, fibronectin, tenascin, nidogen, laminin |
| MMP-16 | MT3-MMP | 64,000 | 52,000 | proMMP-2 |
| MMP-17 | MT4-MMP | 57,000 | 53,000 | |
| MMP-18 | Xenopus collagenase | 55,000 | 42,000 | |
| MMP-19 | 54,000 | 45,000 | Collagen IV, gelatin, laminin, nidogen, tenascin, fibronectin, aggrecan, COMP | |
| MMP-20 | Enamelysin | 54,000 | 22,000 | Amelogenin |
| MMP-21 | XMMP (xenopus) | 70,000 | 53,000 | |
| MMP-22 (MMP-27) | CMMP (chicken) | 52,000 | 43,000 | Gelatin, casein |
| MMP-23 | CA-MMP | ? | ? | |
| MMP-24 | MT5-MMP | 63,000 | 45,000 | proMMP-2, proMMP-9, gelatin |
| MMP-25 | MT6-MMP, leukolysin | 56,000 | Collagen IV, gelatin, fibronectin, fibrin | |
| MMP-26 | Matrilysin-2, endometase | 28,000 | Collagen IV, fibronectin, fibrinogen, gelatin, α1-proteinase inhibitor, proMMP-9 | |
| MMP-28 | Epilysin | 59,000 (55,000) | Casein |
α2-M, α2-macroglobulin; COMP, cartilage oligomeric matrix protein; MBP, myelin basic protein; Mr, relative molecular mass; TNF, tumour necrosis factor.
Figure 1Basic domain structures of the matrix metalloproteinases (MMPs). MMPs consist of: a propeptide (grey), which maintains the enzymes in a latent state; a catalytic domain (blue) with the active site and the catalytic zinc (Zn) (red); and, with the exception of the matrilysins, a COOH-terminal domain (C) (yellow) with homology to the serum protein hemopexin. The latter two domains are connected by a linker peptide. Gelatinases have an insert of three fibronectin type II repeats (turquoise) in the catalytic domain, which is involved in substrate recognition. Membrane-type MMPs contain a transmembrane domain (black) and a cytoplasmic tail (green) at the COOH terminus, which anchors these enzymes in the cell membrane.
Figure 2Structure of the catalytic domain of the matrix metalloproteinase MMP-3. The ribbon diagram was created using WebLab Viewer software based on a crystal structure analysis by Gomis-Rüth et al. [61]. Strands (sI–sV) and helices (hA–hC) are labelled in black; the catalytic zinc (centre), coordinated by three histidine residues (pink), and the structural zinc (Zn) (top) are labelled in black and white, respectively; and the NH2 terminus (N) and COOH terminus (C) are labelled in red. The active site cleft and the characteristic methionine (Met) turn are indicated with arrows.