Literature DB >> 18571410

MT1-MMP-dependent invasion is regulated by TI-VAMP/VAMP7.

Anika Steffen1, Gaëlle Le Dez, Renaud Poincloux, Chiara Recchi, Pierre Nassoy, Klemens Rottner, Thierry Galli, Philippe Chavrier.   

Abstract

Proteolytic degradation of the extracellular matrix (ECM) is one intrinsic property of metastatic tumor cells to breach tissue barriers and to disseminate into different tissues. This process is initiated by the formation of invadopodia, which are actin-driven, finger-like membrane protrusions. Yet, little is known on how invadopodia are endowed with the functional machinery of proteolytic enzymes [1, 2]. The key protease MT1-MMP (membrane type 1-matrix metalloproteinase) confers proteolytic activity to invadopodia and thus invasion capacity of cancer cells [3-6]. Here, we report that MT1-MMP-dependent matrix degradation at invadopodia is regulated by the v-SNARE TI-VAMP/VAMP7, hence providing the molecular inventory mediating focal degradative activity of cancer cells. As observed by TIRF microscopy, MT1-MMP-mCherry and GFP-VAMP7 were simultaneously detected at proteolytic sites. Functional ablation of VAMP7 decreased the ability of breast cancer cells to degrade and invade in a MT1-MMP-dependent fashion. Moreover, the number of invadopodia was dramatically decreased in VAMP7- and MT1-MMP-depleted cells, indicative of a positive-feedback loop in which the protease as a cargo of VAMP7-targeted transport vesicles regulates maturation of invadopodia. Collectively, these data point to a specific role of VAMP7 in delivering MT1-MMP to sites of degradation, maintaining the functional machinery required for invasion.

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Year:  2008        PMID: 18571410     DOI: 10.1016/j.cub.2008.05.044

Source DB:  PubMed          Journal:  Curr Biol        ISSN: 0960-9822            Impact factor:   10.834


  93 in total

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3.  Phosphorylation of membrane type 1-matrix metalloproteinase (MT1-MMP) and its vesicle-associated membrane protein 7 (VAMP7)-dependent trafficking facilitate cell invasion and migration.

Authors:  Karla C Williams; Marc G Coppolino
Journal:  J Biol Chem       Date:  2011-10-14       Impact factor: 5.157

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Journal:  J Cell Sci       Date:  2019-10-15       Impact factor: 5.285

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10.  Exosome secretion is enhanced by invadopodia and drives invasive behavior.

Authors:  Daisuke Hoshino; Kellye C Kirkbride; Kaitlin Costello; Emily S Clark; Seema Sinha; Nathan Grega-Larson; Matthew J Tyska; Alissa M Weaver
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