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      Disordered purinergic signaling inhibits pathological angiogenesis in cd39/Entpd1-null mice.

      The American Journal of Pathology
      Animals, Antigens, CD, genetics, metabolism, Apyrase, Cell Adhesion, Cell Proliferation, Endothelium, Vascular, enzymology, pathology, Gene Deletion, Integrin alphaVbeta3, Integrins, Melanoma, Experimental, blood supply, Mice, Mice, Mutant Strains, Neoplasm Transplantation, Neovascularization, Pathologic, Protein Kinases, Purines, Receptors, Purinergic P2, Signal Transduction

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          Abstract

          CD39/ecto-nucleoside triphosphate diphosphohydrolase-type-1 (ENTPD1) is the dominant vascular ecto-nucleotidase that catalyzes the phosphohydrolysis of extracellular nucleotides in the blood and extracellular space. This ecto-enzymatic process modulates endothelial cell, leukocyte, and platelet purinergic receptor-mediated responses to extracellular nucleotides in the setting of thrombosis and vascular inflammation. We show here that deletion of Cd39/Entpd1 results in abrogation of angiogenesis, causing decreased growth of implanted tumors and inhibiting development of pulmonary metastases. Qualitative abnormalities of Cd39-null endothelial cell adhesion and integrin dysfunction were demonstrated in vitro. These changes were associated with decreased activation of focal adhesion kinase and extracellular signaling-regulated kinase-1 and -2 in endothelial cells. Our data indicate novel links between CD39/ENTPD1, extracellular nucleotide-mediated signaling, and vascular endothelial cell integrin function that impact on angiogenesis and tumor growth.

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