4.7 Article

A RAB5/RAB4 recycling circuitry induces a proteolytic invasive program and promotes tumor dissemination

Journal

JOURNAL OF CELL BIOLOGY
Volume 206, Issue 2, Pages 307-328

Publisher

ROCKEFELLER UNIV PRESS
DOI: 10.1083/jcb.201403127

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Funding

  1. Associozione Italiana per la Ricerca sul Cancro [IG-14404, IG 14104]
  2. European Research Council [233033, 2688361]
  3. Italian Ministries of Education University Research (MIUR) and of Health
  4. Association for International Cancer Research [14-03351]
  5. Ferrari Foundation
  6. CARIPLO Foundation
  7. Fondazione Umberto Veronesi (FUV)
  8. European Research Council (ERC) [233033] Funding Source: European Research Council (ERC)

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The mechanisms by which tumor cells metastasize and the role of endocytic proteins in this process are not well understood. We report that overexpression of the GTPase RAB5A, a master regulator of endocytosis, is predictive of aggressive behavior and metastatic ability in human breast cancers. RAB5A is necessary and sufficient to promote local invasion and distant dissemination of various mammary and nonmammary tumor cell lines, and this prometastatic behavior is associated with increased intratumoral cell motility. Specifically, RAB5A is necessary for the formation of invadosomes, membrane protrusions specialized in extracellular matrix (ECM) degradation. RAB5A promotes RAB4- and RABENOSYN-5-dependent endo/exocytic cycles (EECs) of critical cargos (membrane-type 1 matrix metalloprotease [MT1-MMP and beta 3 integrin) required for invadosome formation in response to motogenic stimuli. This trafficking circuitry is necessary for spatially localized hepatocyte growth factor (HGF)/MET signaling that drives invasive, proteolysis-dependent chemotaxis in vitro and for conversion of ductal carcinoma in situ to invasive ductal carcinoma in vivo. Thus, RAB5A/RAB4 EECs promote tumor dissemination by controlling a proteolytic, mesenchymal invasive program.

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