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PreviewIssue DateTitleAuthor(s)
1995Neutrophils activated by granulocyte-macrophage colony-stimulating factor express receptors for interleukin-3 which mediate class II expressionSmith, W.; Guida, L.; Qiuy, S.; Korpelainen, E.; van den Hueven, C.; Gillis, D.; Hawrylowicz, C.; Vadas, M.; Lopez, A.
2002Sphingosine kinase interacts with TRAF2 and dissects tumor necrosis factor-a signalingXia, P.; Wang, L.; Moretti, P.; Albanese, N.; Chai, F.; Pitson, S.; D'Andrea, R.; Gamble, J.; Vadas, M.
2003Activation of endothelial extracellular signal-regulated kinase is essential for neutrophil transmigration: Potential involvement of a soluble neutrophil factor in endothelial activationStein, B.; Gamble, J.; Pitson, S.; Vadas, M.; Khew-Goodall, Y.
1999Cloning, characterization, and chromosomal location of a novel human K+-C1- cotransporterHiki, K.; D'Andrea, R.; Furze, J.; Crawford, J.; Woollatt, E.; Sutherland, G.; Vadas, M.; Gamble, J.
2005Phosphorylation-dependent translocation of sphingosine kinase to the plasma membrane drives its oncogenic signallingPitson, S.; Xia, P.; Leclercq, T.; Moretti, P.; Zebol, J.; Lynn, H.; Wattenberg, B.; Vadas, M.
1998Tumor necrosis factor-α induces adhesion molecule expression through the sphingosine kinase pathwayXia, P.; Gamble, J.; Rye, K.A.; Wang, L.; Hii, C.; Cockerill, P.; Khew-Goodall, Y.; Bert, A.; Barter, P.; Vadas, M.
2006The calmodulin-binding site of sphingosine kinase and its role in agonist-dependent translocation of sphingosine kinase 1 to the plasma membraneO'Halloran, C.; Moretti, P.; Hewitt, N.; Bagley, C.; Vadas, M.; Pitson, S.
2004A vascular cell-restricted RhoGAP, p73RhoGAP, is a key regulator of angiogenesisSu, Z.; Hahn, C.; Goodall, G.; Reck, N.; Leske, A.; Davy, A.; Kremmidiotis, G.; Vadas, M.; Gamble, J.
2007Sphingosine kinase 1 is a critical component of the copper-dependent FGF1 export pathwaySoldi, R.; Mandinova, A.; Venkataraman, K.; Hla, T.; Vadas, M.; Pitson, S.; Duarte, M.; Graziani, I.; Kolev, V.; Kacer, D.; Kirov, A.; Maciag, T.; Prudovsky, I.
2010Stress-induced premature senescence mediated by a novel gene, SENEX, results in an anti-inflammatory phenotype in endothelial cellsColeman, P.; Hahn, C.; Grimshaw, M.; Lu, Y.; Li, X.; Brautigan, P.; Beck, K.; Stocker, R.; Vadas, M.; Gamble, J.