spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Stanton, H.
Right arrow Articles by Murphy, G.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Stanton, H.
Right arrow Articles by Murphy, G.
Akiyama, S. K., Yamada, S. S., Chen, W.-T. and Yamada, K. M (1989). Analysis of fibronectin receptor function with monoclonal antibodies: rolesin cell adhesion, migration, matrix assembly and cytoskeletal organization. J. Cell Biol 109, 863-875.[Abstract/Free Full Text]

Akiyama, S. K., Olden, K. and Yamada, K. M (1995). Fibronectin and integrins in invasion and metastasis. Cancer Metast. Rev 14, 173-189.[Medline]

Allan, J. A., Docherty, A. J. P., Barker, P. J., Huskisson, N. S., Reynolds, J. J. and Murphy, G (1995). Binding of gelatinases A and B to type I collagen and other matrix components. Biochem. J 309, 299-306.

Arner, E. C. and Tortorella, M. D (1995). Signal transduction through chondrocyte integrin receptors induces matrix metalloproteinase synthesis and synergizes with interleukin-1. Arthritis Rheum 38, 1304-1314.[Medline]

Atkinson, S. J., Crabbe, T., Cowell, S., Ward, R. V., Butler, M. J., Sato, H., Seiki, M., Reynolds, J. J. and Murphy, G (1995). Intermolecular autolytic cleavage can contribute to the activation of progelatinase A by cell membranes. J. Biol. Chem 270, 30479-30485.[Abstract/Free Full Text]

Azzam, H. S. and Thompson, E. W (1992). Collagen-induced activation of the Mr72, 000 type IV collagenase in normal and malignant human fibroblastoid cells. Cancer Res 52, 4540-4544.[Abstract/Free Full Text]

Borsi, L., Castellani, P., Balza, E., Siri, A., Pellecchia, C., De Scalzi, F. and Zardi, L (1986). Large-scale procedure for the purification of fibronectin domains. Anal. Biochem 155, 335-345.[Medline]

Brooks, P. C., Str\232mblad, S., Sanders, L. C., von Schalscha, T. L., Aimes, R., Stetler-Stevenson, W. G., Quigley, J. P. and Cheresh, D. A (1996). Localization of matrix metalloproteinase MMP-2 to the surface of cells by interaction with integrinv 3. Cell 85, 683-693.[Medline]

Brooks, P. C., Silletti, S., von Schalscha, T. L., Friedlander, M. and Cheresh, D. A (1998). Disruption of angiogenesis by PEX, a noncatalytic metalloproteinase fragment with integrin binding activity. Cell 92, 391-400.[Medline]

Butler, G. S., Butler, M. J., Atkinson, S. J., Will, H., Tamura, T., Schade van Westrum, S., Crabbe, T., Clements, J., d'Ortho, M. P. and Murphy, G (1998). The TIMP2 membrane type 1 metalloproteinase \324receptor' regulates the concentration and efficient activation of progelatinase A. A kinetic study. J. Biol. Chem 273, 871-880.[Abstract/Free Full Text]

Chambers, A. F. and Matrisian, L. M (1997). Changing views of the role of matrix metalloproteinases in metastasis. J. Nat. Cancer Inst 89, 1260-1270.[Abstract/Free Full Text]

Chintala, S. K., Sawaya, R., Gokaslan, Z. L. and Rao, J. S (1996). Modulation of matrix metalloprotease-2 and invasion in human glioma cells by3 1 integrin. Cancer Lett 103, 201-208.[Medline]

Chomczynski, P. and Sacchi, N (1987). Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction. Anal. Biochem 162, 156-159.[Medline]

d'Ortho, M. P., Will, H., Atkinson, S. J., Butler, G., Messent, A. J., Gavrilovic, J., Smith, B., Timpl, R., Zardi, L. and Murphy, G (1997). Membrane-type matrix metalloproteinases 1 and 2 exhibit broad-spectrum proteolytic capacities comparable to many matrix metalloproteinases. Eur. J. Biochem 250, 751-757.[Medline]

d'Ortho, M. P., Stanton, H., Butler, M., Atkinson, S. J., Murphy, G. and Hembry, R. M (1998). MT1-MMP on the cell surface causes focal degradation of gelatin films. FEBS Lett 421, 159-164.[Medline]

Danen, E. H. J., Aota, S., van Kraats, A. A., Yamada, K., Ruiter, D. J. and van Muijen, G. N. P (1995). Requirement for the synergy site for cell adhesion to fibronectin depends on the activation state of the integrin5 1. J. Biol. Chem 270, 21612-21618.[Abstract/Free Full Text]

Fukai, F., Ohtaki, M., Fujii, N., Yajima, H., Ishii, T., Nishizawa, Y., Miyazaki, K. and Katayama, T (1995). Release of biological activities from quiescent fibronectin by a conformational change and limited proteolysis by matrix metalloproteinases. Biochemistry 34, 11453-11459.[Medline]

Gilles, C., Polette, M., Seiki, M., Birembaut, P. and Thompson, E. W (1997). Implication of collagen type-I induced membrane-type 1-matrix metalloproteinase expression and matrix metalloproteinase-2 activation in the metastatic progression of breast carcinoma. Lab. Invest 76, 651-660.[Medline]

Greiling, D. and Clark, R. A. F (1997). Fibronectin provides a conduit for fibroblast transmigration from collagenous stroma into fibrin clot provisional matrix. J. Cell Sci 110, 861-870.[Abstract]

Haas, T. L., Davis, S. and Madri, J. A (1998). Three-dimensional type I collagen lattices induce coordinate expression of matrix metalloproteinases MT1-MMP and MMP-2 in microvascular endothelial cells. J. Biol. Chem 273, 3604-3610.[Abstract/Free Full Text]

Heussen, C. and Dowdle, E. B (1980). Electrophoretic analysis ofplasminogen activators in polyacrylamide gels containing sodium dodecyl sulfate and copolymerized substrates. Anal. Biochem 102, 196-202.[Medline]

Huhtala, P., Humphries, M. J., McCarthy, J. B., Tremble, P. M., Werb, Z. and Damsky, C. H (1995). Cooperative signaling by5 1 and4 1 integrins regulates metalloproteinase gene expression in fibroblasts adhering to fibronectin. J. Cell Biol 129, 867-879.[Abstract/Free Full Text]

Imai, K., Ohuchi, E., Aoki, T., Nomura, H., Fujii, Y., Sato, H., Seiki, M. and Okada, Y (1996). Membrane-type matrix metalloproteinase 1 is a gelatinolytic enzyme and is secreted in a complex with tissue inhibitor of metalloproteinases 2. Cancer Res 56, 2707-2710.[Abstract/Free Full Text]

Kn\212uper, V., Will, H., Lopez-Ot\222n, C., Smith, B., Atkinson, S. J., Stanton, H., Hembry, R. M. and Murphy, G (1996). Cellular mechanisms for human procollagenase-3 (MMP-13) activation. J. Biol. Chem 271, 17124-17131.[Abstract/Free Full Text]

Kubota, S., Ito, H., Ishibashi, Y. and Seyama, Y (1997). Anti-alpha3 integrin antibody induces the activated form of matrix metalloproteinase-2 (MMP-2) with concomitant stimulation of invasion through matrigel by human rhabdomyosarcoma cells. Int. J. Cancer 70, 106-111.[Medline]

Laemmli, U. K. and Favre, M (1973). Maturation of the head of bacteriophage T4. I. DNA packaging events. J. Mol. Biol 80, 575-599.[Medline]

LaFlamme, S. E., Akiyama, S. K. and Yamada, K. M (1992). Regulation of fibronectin receptor distribution. J. Cell Biol 117, 437-447.[Abstract/Free Full Text]

Langholz, O., R\232ckel, D., Mauch, C., Kozlowska, E., Bank, I., Krieg, T. and Eckes, B (1995). Collagen and collagenase gene expression in three-dimensional collagen lattices are differentially regulated by1 1 and2 1 integrins. J. Cell Biol 131, 1903-1915.[Abstract/Free Full Text]

Larjava, H., Lyons, J. G., Salo, T., Makela, M., Koivisto, L., Birkedal-Hansen, H., Akiyama, S. K., Yamada, K. M. and Heino, J (1993). Anti-integrin antibodies induce type IV collagenase expression in keratinocytes. J. Cell Physiol 157, 190-200.[Medline]

Lohi, J., Lehti, K., Westermarck, J., K\212h\212ri, V. and Keski-Oja, J (1996). Regulation of membrane-type matrix metalloproteinase-1 expression by growth factors and phorbol 12-myristate 13-acetate. Eur. J. Biochem 239, 239-247.[Medline]

Miyamoto, S., Teramoto, H., Coso, O. A., Gutkind, J. S., Burbelo, P. D., Akiyama, S. K. and Yamada, K. M (1995). Integrin function:molecular hierarchies of cytoskeletal and signaling molecules. J. Cell Biol 131, 791-805.[Abstract/Free Full Text]

Miyamoto, S., Teramoto, H., Gutkind, J. S. and Yamada, K. M (1996). Integrins can collaborate with growth factors for phosphorylation of receptor tyrosine kinases and MAP kinase activation: roles of integrin aggregation and occupancy of receptors. J. Cell Biol 135, 1633-1642.[Abstract/Free Full Text]

Murphy, G., Cawston, T. E. and Reynolds, J. J (1981). An inhibitor of collagenase from human amniotic fluid. Purification, characterization and action on metalloproteinases. Biochem. J 195, 167-170.[Medline]

Murphy, G., Houbrechts, A., Cockett, M. I., Williamson, R. A., O'Shea, M. and Docherty, A. J. P (1991). The N-terminal domain of tissue inhibitor of metalloproteinases retains metalloproteinase inhibitory activity. Biochemistry 30, 8097-8102.[Medline]

Murphy, G., Allan, J. A., Willenbrock, F., Cockett, M. I., O'Connell, J. P. and Docherty, A. J. P (1992). The role of the C-terminal domain in collagenase and stromelysin specificity. J. Biol. Chem 267, 9612-9618.[Abstract/Free Full Text]

Murphy, G., Willenbrock, F., Ward, R. V., Cockett, M. I., Eaton, D. and Docherty, A. J. P (1992). The C-terminal domain of 72 kDa gelatinase A is not required for catalysis, but is essential for membrane activation and modulates interactions with tissue inhibitors of metalloproteinases. Biochem. J 283, 637-641.

Ohuchi, E., Imai, K., Fujii, Y., Sato, H., Seiki, M. and Okada, Y (1997). Membrane type 1 matrix metalloproteinase digests interstitial collagens and other extracellular matrix macromolecules. J. Biol. Chem 272, 2446-2451.[Abstract/Free Full Text]

Paterson, H., Reeves, B., Brown, R., Hall, A., Furth, M., Bos, J., Jones, P. and Marshall, C (1987). Activated N- ras controls the transformed phenotype of HT1080 human fibrosarcoma cells. Cell 51, 803-812.[Medline]

Pei, D. and Weiss, S. J (1996). Transmembrane-deletion mutants of the membrane-type matrix metalloproteinase-1 process progelatinase A and express intrinsic matrix-degrading activity. J. Biol. Chem 271, 9135-9140.[Abstract/Free Full Text]

Plopper, G. E., McNamee, H. P., Dike, L. E., Bojanowski, K., Ingber, D.E (1995). Convergence of integrin and growth factor receptor signaling pathways within the focal adhesion complex. Mol. Biol. Cell 6, 1349-1365.[Abstract]

Reich, R., Blumenthal, M. and Liscovitch, M (1995). Role of phospholipase D in laminin-induced production of gelatinase A (MMP-2) in metastatic cells. Clin. Exp. Metast 13, 134-140.[Medline]

Riikonen, T., Westermarck, J., Koivisto, L., Broberg, A., K\212h\212ri, V. M. and Heino, J (1995). Integrin2 1 is a positive regulator of collagenase (MMP-1) and collagen1(I) gene expression. J. Biol. Chem 270, 13548-13552.[Abstract/Free Full Text]

Sato, H., Takino, T., Okada, Y., Cao, J., Shinagawa, A., Yamamoto, E. and Seiki, M (1994). A matrix metalloproteinase expressed on the surface of invasive tumour cells. Nature 370, 61-65.[Medline]

Sato, H. and Seiki, M (1996). Membrane-type matrix metalloproteinases (MT-MMPs) in tumor metastasis. J. Biochem 119, 209-215.

Schwartz, M. A., Schaller, M. D. and Ginsberg, M. H (1995). Integrins-emerging paradigms of signal-transduction. Annu. Rev. Cell Dev. Biol 11, 549-599.[Medline]

Seftor, R. E. B., Seftor, E. A., Gehlsen, K. R., Stetler-Stevenson, W. G., Brown, P. D., Ruoslahti, E. and Hendrix, M. J. C (1992). Role of thev 3 integrin in human melanoma cell invasion. Proc. Nat. Acad. Sci. USA 89, 1557-1561.[Abstract/Free Full Text]

Strongin, A. Y., Collier, I., Bannikov, G., Marmer, B. L., Grant, G. A. and Goldberg, G. I (1995). Mechanism of cell surface activation of 72-kDa type IV collagenase. J. Biol. Chem 270, 5331-5338.[Abstract/Free Full Text]

Tremble, P., Chiquet-Ehrismann, R. and Werb, Z (1994). The extracellular matrix ligands fibronectin and tenascin collaborate in regulating collagenase gene expression in fibroblasts. Mol. Biol. Cell 5, 439-453.[Abstract]

von der Mark, H., Durr, J., Sonnenberg, A., von der Mark, K., Deutzmann, R. and Goodman, S. L (1991). Skeletal myoblasts utilize a novel beta 1-series integrin and not alpha 6 beta 1 for binding to the E8 and T8 fragments of laminin. J. Biol. Chem 266, 23593-23601.[Abstract/Free Full Text]

Wallon, U. M. and Overall, C. M (1997). The hemopexin-like domain (C domain) of human gelatinase A (matrix metalloproteinase-2) requires Ca2+for fibronectin and heparin binding. J. Biol. Chem 272, 7473-7481.[Abstract/Free Full Text]

Ward, R. V., Hembry, R. M., Reynolds, J. J. and Murphy, G (1991). The purification of tissue inhibitor of metalloproteinases-2 from its 72 kDa progelatinase complex. Demonstration of the biochemical similarities of tissue inhibitor of metalloproteinases-2 and tissue inhibitor of metalloproteinases-1. Biochem. J 278, 179-187.

Ward, R. V., Atkinson, S. J., Reynolds, J. J. and Murphy, G (1994). Cell surface-mediated activation of progelatinase A: demonstration of the involvement of the C-terminal domain of progelatinase A in cell surface binding and activation of progelatinase A by primary fibroblasts. Biochem. J 304, 263-269.

Werb, Z., Tremble, P. M., Behrendtsen, E., Crowley, E. and Damsky, C. H (1989). Signal transduction through the fibronectin receptor induces collagenase and stromelysin gene expression. J. Cell Biol 109, 877-889.[Abstract/Free Full Text]

Werb, Z., Sympson, C. J., Alexander, C. M., Thomasset, N., Lund, L. R., MacAuley, A., Ashkenas, J. and Bissell, M. J (1996). Extracellular matrix remodeling and the regulation of epithelial-stromal interactions during differentiation and involution. Kidney Int 49, 54-.

Werb, Z (1997). ECM and cell surface proteolysis: regulating cellular ecology. Cell 91, 439-442.[Medline]

West-Mays, J. A., Strissel, K. J., Sadow, P. M. and Fini, M. E (1995). Competence for collagenase gene expression by tissue fibroblasts requires activation of an interleukin 1autocrine loop. Proc. Nat. Acad. Sci. USA 92, 6768-6772.[Abstract/Free Full Text]

Will, H., Atkinson, S. J., Butler, G. S., Smith, B. and Murphy, G (1996). The soluble catalytic domain of membrane type 1 matrix metalloproteinase cleaves the propeptide of progelatinase A and intiates autoproteolytic activation. Regulation by TIMP-2 and TIMP-3. J. Biol. Chem 271, 17119-17123.[Abstract/Free Full Text]

Willenbrock, F., Crabbe, T., Slocombe, P. M., Sutton, C. W., Docherty, A. J. P., Cockett, M. I., O'Shea, M., Brocklehurst, K., Phillips, I. R. and Murphy, G (1993). The activity of the tissue inhibitors of metalloproteinases is regulated by C-terminal domain interactions: a kinetic analysis of the inhibition of gelatinase A. Biochemistry 32, 4330-4337.[Medline]

Yamada, K. M. and Kennedy, D. W (1984). Dualistic nature of adhesive protein function. J. Cell Biol 99, 29-36.[Abstract/Free Full Text]

Yamada, K. M., Kennedy, D. W., Yamada, S. S., Gralnick, H., Chen, W.-T. and Akiyama, S. K (1990). Monoclonal antibody and synthetic peptide inhibitors of human tumor cell migration. Cancer Res 50, 4485-4496.[Abstract/Free Full Text]




This article has been cited by other articles:


Home page
J. Biol. Chem.Home page
J.-A. Cho, P. Osenkowski, H. Zhao, S. Kim, M. Toth, K. Cole, A. Aboukameel, A. Saliganan, L. Schuger, R. D. Bonfil, et al.
The Inactive 44-kDa Processed Form of Membrane Type 1 Matrix Metalloproteinase (MT1-MMP) Enhances Proteolytic Activity via Regulation of Endocytosis of Active MT1-MMP
J. Biol. Chem., June 20, 2008; 283(25): 17391 - 17405.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
Y. Itoh, N. Ito, H. Nagase, and M. Seiki
The Second Dimer Interface of MT1-MMP, the Transmembrane Domain, Is Essential for ProMMP-2 Activation on the Cell Surface
J. Biol. Chem., May 9, 2008; 283(19): 13053 - 13062.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
S. D. Sithu, W. R. English, P. Olson, D. Krubasik, A. H. Baker, G. Murphy, and S. E. D'Souza
Membrane-type 1-Matrix Metalloproteinase Regulates Intracellular Adhesion Molecule-1 (ICAM-1)-mediated Monocyte Transmigration
J. Biol. Chem., August 24, 2007; 282(34): 25010 - 25019.
[Abstract] [Full Text] [PDF]


Home page
Mol Cancer ResHome page
T.-V. Do, J. C. Symowicz, D. M. Berman, L. A. Liotta, E. F. Petricoin III, M. S. Stack, and D. A. Fishman
Lysophosphatidic Acid Down-Regulates Stress Fibers and Up-Regulates Pro-Matrix Metalloproteinase-2 Activation in Ovarian Cancer Cells
Mol. Cancer Res., February 1, 2007; 5(2): 121 - 131.
[Abstract] [Full Text] [PDF]


Home page
J. Gen. Physiol.Home page
D. M. Browe and C. M. Baumgarten
EGFR Kinase Regulates Volume-sensitive Chloride Current Elicited by Integrin Stretch via PI-3K and NADPH Oxidase in Ventricular Myocytes
J. Gen. Physiol., February 27, 2006; 127(3): 237 - 251.
[Abstract] [Full Text] [PDF]


Home page
Cancer Res.Home page
P. C. Lunter, J. W.J. van Kilsdonk, H. van Beek, I. M.H.A. Cornelissen, M. Bergers, P. H.G.M. Willems, G. N.P. van Muijen, and G. W.M. Swart
Activated Leukocyte Cell Adhesion Molecule (ALCAM/CD166/MEMD), a Novel Actor in Invasive Growth, Controls Matrix Metalloproteinase Activity
Cancer Res., October 1, 2005; 65(19): 8801 - 8808.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Respir. Crit. Care Med.Home page
R. T. Schermuly, H. Yilmaz, H. A. Ghofrani, K. Woyda, S. Pullamsetti, A. Schulz, T. Gessler, R. Dumitrascu, N. Weissmann, F. Grimminger, et al.
Inhaled Iloprost Reverses Vascular Remodeling in Chronic Experimental Pulmonary Hypertension
Am. J. Respir. Crit. Care Med., August 1, 2005; 172(3): 358 - 363.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
P. Osenkowski, S. O. Meroueh, D. Pavel, S. Mobashery, and R. Fridman
Mutational and Structural Analyses of the Hinge Region of Membrane Type 1-Matrix Metalloproteinase and Enzyme Processing
J. Biol. Chem., July 15, 2005; 280(28): 26160 - 26168.
[Abstract] [Full Text] [PDF]


Home page
Eur Respir JHome page
H. Lepetit, S. Eddahibi, E. Fadel, E. Frisdal, C. Munaut, A. Noel, M. Humbert, S. Adnot, M-P. D'Ortho, and C. Lafuma
Smooth muscle cell matrix metalloproteinases in idiopathic pulmonary arterial hypertension
Eur. Respir. J., May 1, 2005; 25(5): 834 - 842.
[Abstract] [Full Text] [PDF]


Home page
Molecular Cancer TherapeuticsHome page
C. F. Albright, N. Graciani, W. Han, E. Yue, R. Stein, Z. Lai, M. Diamond, R. Dowling, L. Grimminger, S.-Y. Zhang, et al.
Matrix metalloproteinase-activated doxorubicin prodrugs inhibit HT1080 xenograft growth better than doxorubicin with less toxicity
Mol. Cancer Ther., May 1, 2005; 4(5): 751 - 760.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
H. G. Munshi, Y. I. Wu, S. Mukhopadhyay, A. J. Ottaviano, A. Sassano, J. E. Koblinski, L. C. Platanias, and M. S. Stack
Differential Regulation of Membrane Type 1-Matrix Metalloproteinase Activity by ERK 1/2- and p38 MAPK-modulated Tissue Inhibitor of Metalloproteinases 2 Expression Controls Transforming Growth Factor-{beta}1-induced Pericellular Collagenolysis
J. Biol. Chem., September 10, 2004; 279(37): 39042 - 39050.
[Abstract] [Full Text] [PDF]


Home page
Circ. Res.Home page
R. T. Schermuly, K. P. Kreisselmeier, H. A. Ghofrani, A. Samidurai, S. Pullamsetti, N. Weissmann, C. Schudt, L. Ermert, W. Seeger, and F. Grimminger
Antiremodeling Effects of Iloprost and the Dual-Selective Phosphodiesterase 3/4 Inhibitor Tolafentrine in Chronic Experimental Pulmonary Hypertension
Circ. Res., April 30, 2004; 94(8): 1101 - 1108.
[Abstract] [Full Text] [PDF]


Home page
Biol. Reprod.Home page
M. K.Y. Siu and C. Y. Cheng
Interactions of Proteases, Protease Inhibitors, and the {beta}1 Integrin/Laminin {gamma}3 Protein Complex in the Regulation of Ectoplasmic Specialization Dynamics in the Rat Testis
Biol Reprod, April 1, 2004; 70(4): 945 - 964.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
H. Zhao, M. M. Bernardo, P. Osenkowski, A. Sohail, D. Pei, H. Nagase, M. Kashiwagi, P. D. Soloway, Y. A. DeClerck, and R. Fridman
Differential Inhibition of Membrane Type 3 (MT3)-Matrix Metalloproteinase (MMP) and MT1-MMP by Tissue Inhibitor of Metalloproteinase (TIMP)-2 and TIMP-3 Regulates Pro-MMP-2 Activation
J. Biol. Chem., March 5, 2004; 279(10): 8592 - 8601.
[Abstract] [Full Text] [PDF]


Home page
J. Physiol.Home page
R. Boland, B. J. Joyce, M. J. Wallace, H. Stanton, A. J. Fosang, R. A. Pierce, R. Harding, and S. B. Hooper
Cortisol enhances structural maturation of the hypoplastic fetal lung in sheep
J. Physiol., January 15, 2004; 554(2): 505 - 517.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
A. Remacle, G. Murphy, and C. Roghi
Membrane type I-matrix metalloproteinase (MT1-MMP) is internalised by two different pathways and is recycled to the cell surface
J. Cell Sci., October 1, 2003; 116(19): 3905 - 3916.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
D. V. Rozanov and A. Y. Strongin
Membrane Type-1 Matrix Metalloproteinase Functions as a Proprotein Self-convertase. EXPRESSION OF THE LATENT ZYMOGEN IN PICHIA PASTORIS, AUTOLYTIC ACTIVATION, AND THE PEPTIDE SEQUENCE OF THE CLEAVAGE FORMS
J. Biol. Chem., February 28, 2003; 278(10): 8257 - 8260.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
B. G. Galvez, S. Matias-Roman, M. Yanez-Mo, F. Sanchez-Madrid, and A. G. Arroyo
ECM regulates MT1-MMP localization with {beta}1 or {alpha}v{beta}3 integrins at distinct cell compartments modulating its internalization and activity on human endothelial cells
J. Cell Biol., November 7, 2002; 159(3): 509 - 521.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
H. G. Munshi, Y. I. Wu, E. V. Ariztia, and M. S. Stack
Calcium Regulation of Matrix Metalloproteinase-mediated Migration in Oral Squamous Cell Carcinoma Cells
J. Biol. Chem., October 25, 2002; 277(44): 41480 - 41488.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
E. M. Tam, Y. I. Wu, G. S. Butler, M. S. Stack, and C. M. Overall
Collagen Binding Properties of the Membrane Type-1 Matrix Metalloproteinase (MT1-MMP) Hemopexin C Domain. THE ECTODOMAIN OF THE 44-kDa AUTOCATALYTIC PRODUCT OF MT1-MMP INHIBITS CELL INVASION BY DISRUPTING NATIVE TYPE I COLLAGEN CLEAVAGE
J. Biol. Chem., October 4, 2002; 277(41): 39005 - 39014.
[Abstract] [Full Text] [PDF]


Home page
J AndrolHome page
O. Buchman-Shaked, Z. Kraiem, Y. Gonen, and S. Goldman
Presence of Matrix Metalloproteinases and Tissue Inhibitor of Matrix Metalloproteinase in Human Sperm
J Androl, September 1, 2002; 23(5): 702 - 708.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
J. E. Koblinski, J. Dosescu, M. Sameni, K. Moin, K. Clark, and B. F. Sloane
Interaction of Human Breast Fibroblasts with Collagen I Increases Secretion of Procathepsin B
J. Biol. Chem., August 23, 2002; 277(35): 32220 - 32227.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. Toth, S. Hernandez-Barrantes, P. Osenkowski, M. M. Bernardo, D. C. Gervasi, Y. Shimura, O. Meroueh, L. P. Kotra, B. G. Galvez, A. G. Arroyo, et al.
Complex Pattern of Membrane Type 1 Matrix Metalloproteinase Shedding. REGULATION BY AUTOCATALYTIC CELL SURFACE INACTIVATION OF ACTIVE ENZYME
J. Biol. Chem., July 12, 2002; 277(29): 26340 - 26350.
[Abstract] [Full Text] [PDF]


Home page
J. Dent. Res.Home page
H. Palosaari, Y. Ding, M. Larmas, T. Sorsa, J.D. Bartlett, T. Salo, and L. Tjaderhane
Regulation and Interactions of MT1-MMP and MMP-20 in Human Odontoblasts and Pulp Tissue in vitro
J. Dent. Res., May 1, 2002; 81(5): 354 - 359.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
K. Lehti, J. Lohi, M. M. Juntunen, D. Pei, and J. Keski-Oja
Oligomerization through Hemopexin and Cytoplasmic Domains Regulates the Activity and Turnover of Membrane-type 1 Matrix Metalloproteinase
J. Biol. Chem., March 1, 2002; 277(10): 8440 - 8448.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
W. R. English, B. Holtz, G. Vogt, V. Knauper, and G. Murphy
Characterization of the Role of the "MT-loop". AN EIGHT-AMINO ACID INSERTION SPECIFIC TO PROGELATINASE A (MMP2) ACTIVATING MEMBRANE-TYPE MATRIX METALLOPROTEINASES
J. Biol. Chem., November 2, 2001; 276(45): 42018 - 42026.
[Abstract] [Full Text] [PDF]


Home page
Eur Respir JHome page
E. Frisdal, V. Gest, A. Vieillard-Baron, M. Levame, H. Lepetit, S. Eddahibi, C. Lafuma, A. Harf, S. Adnot, and M-;P. d'Ortho
Gelatinase expression in pulmonary arteries during experimental pulmonary hypertension
Eur. Respir. J., November 1, 2001; 18(5): 838 - 845.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
E. Toschi, G. Barillari, C. Sgadari, I. Bacigalupo, A. Cereseto, D. Carlei, C. Palladino, C. Zietz, P. Leone, M. Sturzl, et al.
Activation of Matrix-Metalloproteinase-2 and Membrane-Type-1-Matrix-Metalloproteinase in Endothelial Cells and Induction of Vascular Permeability In Vivo by Human Immunodeficiency Virus-1 Tat Protein and Basic Fibroblast Growth Factor
Mol. Biol. Cell, October 1, 2001; 12(10): 2934 - 2946.
[Abstract] [Full Text] [PDF]


Home page
Cancer Res.Home page
S. Aznavoorian, B. A. Moore, L. D. Alexander-Lister, S. L. Hallit, L. J. Windsor, and J. A. Engler
Membrane Type I-Matrix Metalloproteinase-Mediated Degradation of Type I Collagen by Oral Squamous Cell Carcinoma Cells
Cancer Res., August 1, 2001; 61(16): 6264 - 6275.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
J. Longin, P. Guillaumot, M.-A. Chauvin, A.-M. Morera, and B. Le Magueresse-Battistoni
MT1-MMP in rat testicular development and the control of Sertoli cell proMMP-2 activation
J. Cell Sci., January 6, 2001; 114(11): 2125 - 2134.
[Abstract] [Full Text] [PDF]


Home page
J. Am. Soc. Nephrol.Home page
J. MARTIN, L. EYNSTONE, M. DAVIES, and R. STEADMAN
Induction of Metalloproteinases by Glomerular Mesangial Cells Stimulated by Proteins of the Extracellular Matrix
J. Am. Soc. Nephrol., January 1, 2001; 12(1): 88 - 96.
[Abstract] [Full Text]


Home page
BloodHome page
I. Kazes, I. Elalamy, J.-D. Sraer, M. Hatmi, and G. Nguyen
Platelet release of trimolecular complex components MT1-MMP/TIMP2/MMP2: involvement in MMP2 activation and platelet aggregation
Blood, November 1, 2000; 96(9): 3064 - 3069.
[Abstract] [Full Text] [PDF]


Home page
IOVSHome page
A. Béliveau, M. Bérubé, A. Rousseau, G. Pelletier, and S. L. Guérin
Expression of Integrin {alpha}5{beta}1 and MMPs Associated with Epithelioid Morphology and Malignancy of Uveal Melanoma
Invest. Ophthalmol. Vis. Sci., July 1, 2000; 41(8): 2363 - 2372.
[Abstract] [Full Text]


Home page
Mol. Biol. CellHome page
I. Yana and S. J. Weiss
Regulation of Membrane Type-1 Matrix Metalloproteinase Activation by Proprotein Convertases
Mol. Biol. Cell, July 1, 2000; 11(7): 2387 - 2401.
[Abstract] [Full Text]


Home page
J. Biol. Chem.Home page
W. R. English, X. S. Puente, J. M. P. Freije, V. Knauper, A. Amour, A. Merryweather, C. Lopez-Otin, and G. Murphy
Membrane Type 4 Matrix Metalloproteinase (MMP17) Has Tumor Necrosis Factor-alpha Convertase Activity but Does Not Activate Pro-MMP2
J. Biol. Chem., May 5, 2000; 275(19): 14046 - 14055.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
S. Hernandez-Barrantes, M. Toth, M. M. Bernardo, M. Yurkova, D. C. Gervasi, Y. Raz, Q. A. Sang, and R. Fridman
Binding of Active (57 kDa) Membrane Type 1-Matrix Metalloproteinase (MT1-MMP) to Tissue Inhibitor of Metalloproteinase (TIMP)-2 Regulates MT1-MMP Processing and Pro-MMP-2 Activation
J. Biol. Chem., April 14, 2000; 275(16): 12080 - 12089.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
N. Koshikawa, G. Giannelli, V. Cirulli, K. Miyazaki, and V. Quaranta
Role of Cell Surface Metalloprotease MT1-MMP in Epithelial Cell Migration over Laminin-5
J. Cell Biol., February 7, 2000; 148(3): 615 - 624.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
L Yan, M. Moses, S Huang, and D. Ingber
Adhesion-dependent control of matrix metalloproteinase-2 activation in human capillary endothelial cells
J. Cell Sci., January 11, 2000; 113(22): 3979 - 3987.
[Abstract] [PDF]


Home page
BloodHome page
J. Esparza, C. Vilardell, J. Calvo, M. Juan, J. Vives, A. Urbano-Marquez, J. Yague, and M. C. Cid
Fibronectin Upregulates Gelatinase B (MMP-9) and Induces Coordinated Expression of Gelatinase A (MMP-2) and Its Activator MT1-MMP (MMP-14) by Human T Lymphocyte Cell Lines. A Process Repressed Through RAS/MAP Kinase Signaling Pathways
Blood, October 15, 1999; 94(8): 2754 - 2766.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
T. Sugiura and F. Berditchevski
Function of {alpha}3{beta}1–Tetraspanin Protein Complexes in Tumor Cell Invasion. Evidence for the Role of the Complexes in Production of Matrix Metalloproteinase 2 (MMP-2)
J. Cell Biol., September 20, 1999; 146(6): 1375 - 1389.
[Abstract] [Full Text] [PDF]


Home page
Cancer Res.Home page
S. M. Ellerbroek, D. A. Fishman, A. S. Kearns, L. M. Bafetti, and M. S. Stack
Ovarian Carcinoma Regulation of Matrix Metalloproteinase-2 and Membrane Type 1 Matrix Metalloproteinase through {beta}1 Integrin
Cancer Res., April 1, 1999; 59(7): 1635 - 1641.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
Z. Wang, R. Juttermann, and P. D. Soloway
TIMP-2 Is Required for Efficient Activation of proMMP-2 in Vivo
J. Biol. Chem., August 18, 2000; 275(34): 26411 - 26415.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
C. M. Overall, E. Tam, G. A. McQuibban, C. Morrison, U. M. Wallon, H. F. Bigg, A. E. King, and C. R. Roberts
Domain Interactions in the Gelatinase A{middle dot}TIMP-2{middle dot}MT1-MMP Activation Complex. THE ECTODOMAIN OF THE 44-kDa FORM OF MEMBRANE TYPE-1 MATRIX METALLOPROTEINASE DOES NOT MODULATE GELATINASE A ACTIVATION
J. Biol. Chem., December 8, 2000; 275(50): 39497 - 39506.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. Toth, M. M. Bernardo, D. C. Gervasi, P. D. Soloway, Z. Wang, H. F. Bigg, C. M. Overall, Y. A. DeClerck, H. Tschesche, M. L. Cher, et al.
Tissue Inhibitor of Metalloproteinase (TIMP)-2 Acts Synergistically with Synthetic Matrix Metalloproteinase (MMP) Inhibitors but Not with TIMP-4 to Enhance the (Membrane Type 1)-MMP-dependent Activation of Pro-MMP-2
J. Biol. Chem., December 22, 2000; 275(52): 41415 - 41423.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
D. V. Rozanov, E. I. Deryugina, B. I. Ratnikov, E. Z. Monosov, G. N. Marchenko, J. P. Quigley, and A. Y. Strongin
Mutation Analysis of Membrane Type-1 Matrix Metalloproteinase (MT1-MMP). THE ROLE OF THE CYTOPLASMIC TAIL CYS574, THE ACTIVE SITE GLU240, AND FURIN CLEAVAGE MOTIFS IN OLIGOMERIZATION, PROCESSING, AND SELF-PROTEOLYSIS OF MT1-MMP EXPRESSED IN BREAST CARCINOMA CELLS
J. Biol. Chem., July 6, 2001; 276(28): 25705 - 25714.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
A. M. Belkin, S. S. Akimov, L. S. Zaritskaya, B. I. Ratnikov, E. I. Deryugina, and A. Y. Strongin
Matrix-dependent Proteolysis of Surface Transglutaminase by Membrane-type Metalloproteinase Regulates Cancer Cell Adhesion and Locomotion
J. Biol. Chem., May 18, 2001; 276(21): 18415 - 18422.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
Y. Zhuge and J. Xu
Rac1 Mediates Type I Collagen-dependent MMP-2 Activation. ROLE IN CELL INVASION ACROSS COLLAGEN BARRIER
J. Biol. Chem., May 4, 2001; 276(19): 16248 - 16256.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. Pavlaki, J. Cao, M. Hymowitz, W.-T. Chen, W. Bahou, and S. Zucker
A Conserved Sequence within the Propeptide Domain of Membrane Type 1 Matrix Metalloproteinase Is Critical for Function as an Intramolecular Chaperone