Angiopoietin-Like 4 Prevents Metastasis through Inhibition of Vascular Permeability and Tumor Cell Motility and Invasiveness

Angiopoietin-like 4 (ANGPTL4), a secreted protein of the angiopoietin-like family, is induced by hypoxia in both tumor and endothelial cells as well as in hypoxic perinecrotic areas of numerous cancers. Here, we investigated whether ANGPTL4 might affect tumor growth as well as metastasis. Metastatic...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2006-12, Vol.103 (49), p.18721-18726
Hauptverfasser: Galaup, Ariane, Cazes, Aurelie, Le Jan, Sebastien, Philippe, Josette, Connault, Elisabeth, Le Coz, Emmanuelle, Mekid, Halima, Mir, Lluis M., Opolon, Paule, Corvol, Pierre, Monnot, Catherine, Germain, Stephane
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Sprache:eng
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Zusammenfassung:Angiopoietin-like 4 (ANGPTL4), a secreted protein of the angiopoietin-like family, is induced by hypoxia in both tumor and endothelial cells as well as in hypoxic perinecrotic areas of numerous cancers. Here, we investigated whether ANGPTL4 might affect tumor growth as well as metastasis. Metastatic 3LL cells were therefore xenografted into control mice and mice in which ANGPTL4 was expressed by using in vivo DNA electrotransfer. Whereas primary tumors grew at a similar rate in both groups, 3LL cells metastasized less efficiently to the lungs of mice that expressed ANGPTL4. Fewer 3LL emboli were observed in primary tumors, suggesting that intravasation of 3LL cells was inhibited by ANGPTL4. Furthermore, melanoma B16FO cells injected into the retro-orbital sinus also metastasized less efficiently in mice expressing ANGPTL4. Although B16FO cells were observed in lung vessels, they rarely invaded the parenchyma, suggesting that ANGPTL4 affects extravasation. In addition, recombinant B16FO cells that overexpress ANGPTL4 were generated, showing a lower capacity for in vitro migration, invasion, and adhesion than control cells. Expression of ANGPTL4 induced reorganization of the actin cytoskeleton through inhibition of actin stress fiber formation and vinculin localization at focal contacts. Together, these results show that ANGPTL4, through its action on both vascular and tumor compartments, prevents the metastatic process by inhibiting vascular activity as well as tumor cell motility and invasiveness.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.0609025103