Molecular Biology of the Cell · 2009 · 83 citations · 40 references
BiochemistryMedicineMembrane TransportNatural SciencesImmunologyMetalloproteinCell-matrix InteractionCancer BiologyCancer CellsCellular BiochemistryMatrix BiologyProteomicsCell BiologyCollagen GelsTumor MicroenvironmentTumor BiologySimultaneous KnockdownExtracellular Matrix
Membrane type-1 matrix metalloproteinase (MT1-MMP) supports tumor cell invasion through extracellular matrix barriers containing fibrin, collagen, fibronectin, and other proteins. Here, we show that simultaneous knockdown of two or three members of the tetraspanin family (CD9, CD81, and TSPAN12) markedly decreases MT1-MMP proteolytic functions in cancer cells. Affected functions include fibronectin proteolysis, invasion and growth in three-dimensional fibrin and collagen gels, and MMP-2 activation. Tetraspanin proteins (CD9, CD81, and TSPAN2) selectively coimmunoprecipitate and colocalize with MT1-MMP. Although tetraspanins do not affect the initial biosynthesis of MT1-MMP, they do protect the newly synthesized protein from lysosomal degradation and support its delivery to the cell surface. Interfering with MT1-MMP-tetraspanin collaboration may be a useful therapeutic approach to limit cancer cell invasion and metastasis.
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A matrix metalloproteinase expressed on the surface of invasive tumour cells
Hiroshi Sato, Takahisa Takino, Yasunori Okada et al. · Nature · 1994 · 2.6K citations
Medicine, Metalloprotein, Pathology +11
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Takeshi Itoh, Masatoshi Tanioka, Hiroki Yoshida et al. · PubMed · 1998 · 878 citations
Gelatinase A-deficient Mice, Angiogenesis, Matrix Proteolysis +14