Literature DB >> 8663255

Cellular mechanisms for human procollagenase-3 (MMP-13) activation. Evidence that MT1-MMP (MMP-14) and gelatinase a (MMP-2) are able to generate active enzyme.

V Knäuper1, H Will, C López-Otin, B Smith, S J Atkinson, H Stanton, R M Hembry, G Murphy.   

Abstract

Gelatinase A and membrane-type metalloproteinase (MT1-MMP) were able to process human procollagenase-3 (Mr 60,000) to the fully active enzyme (Tyr85 N terminus; Mr 48,000). MT1-MMP activated procollagenase-3 via a Mr 56,000 intermediate (Ile36 N terminus) to 48,000 which was the result of the cleavage of the Glu84-Tyr85 peptide bond. We have established that the activation rate of procollagenase-3 by MT1-MMP was enhanced in the presence of progelatinase A, thereby demonstrating a unique new activation cascade consisting of three members of the matrix metalloproteinase family. In addition, procollagenase-3 can be activated by plasmin, which cleaved the Lys38-Glu39 and Arg76-Cys77 peptide bonds in the propeptide domain. Autoproteolysis then resulted in the release of the rest of the propeptide domain generating Tyr85 N-terminal active collagenase-3. However, plasmin cleaved the C-terminal domain of collagenase-3 which results in the loss of its collagenolytic activity. Concanavalin A-stimulated fibroblasts expressing MT1-MMP and fibroblast-derived plasma membranes were able to process human procollagenase-3 via a Mr 56,000 intermediate form to the final Mr 48,000 active enzyme which, by analogy with progelatinase A activation, may represent a model system for in vivo activation. Inhibition experiments using tissue inhibitor of metalloproteinases, plasminogen activator inhibitor-2, or aprotinin demonstrated that activation in the cellular model system was due to MT1-MMP/gelatinase A and excluded the participation of serine proteinases such as plasmin during procollagenase-3 activation. We have established that progelatinase A can considerably potentiate the activation rate of procollagenase-3 by crude plasma membrane preparations from concanavalin A-stimulated fibroblasts, thus confirming our results using purified progelatinase A and MT1-MMP. This new activation cascade may be significant in human breast cancer pathology, where all three enzymes have been implicated as playing important roles.

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Year:  1996        PMID: 8663255     DOI: 10.1074/jbc.271.29.17124

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  165 in total

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Review 5.  Matrix metalloproteinase inhibitors as investigative tools in the pathogenesis and management of vascular disease.

Authors:  Mina M Benjamin; Raouf A Khalil
Journal:  Exp Suppl       Date:  2012

6.  Expression of collagenase-3 (matrix metalloproteinase-13) in squamous cell carcinomas of the head and neck.

Authors:  N Johansson; K Airola; R Grénman; A L Kariniemi; U Saarialho-Kere; V M Kähäri
Journal:  Am J Pathol       Date:  1997-08       Impact factor: 4.307

7.  Functional Production of Catalytic Domains of Human MMPs in Escherichia coli Periplasm.

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Journal:  Methods Mol Biol       Date:  2018

8.  Expression and activity of matrix metalloproteinases-2 and -9 in serum, core needle biopsies and tissue specimens of prostate cancer patients.

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Journal:  Virchows Arch       Date:  2004-04-16       Impact factor: 4.064

9.  Expression of MT1-MMP during deciduous tooth resorption in odontoclasts.

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Journal:  J Bone Miner Metab       Date:  2006       Impact factor: 2.626

10.  Transmembrane/cytoplasmic, rather than catalytic, domains of Mmp14 signal to MAPK activation and mammary branching morphogenesis via binding to integrin β1.

Authors:  Hidetoshi Mori; Alvin T Lo; Jamie L Inman; Jordi Alcaraz; Cyrus M Ghajar; Joni D Mott; Celeste M Nelson; Connie S Chen; Hui Zhang; Jamie L Bascom; Motoharu Seiki; Mina J Bissell
Journal:  Development       Date:  2013-01-15       Impact factor: 6.868

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