Berridge et al., “Inositol phosphates and cell signalling,” Nature, 341:197-205 (1989). |
Cantley et al., “Oncogenes and Signal Transduction,” Cell, 74:1657 (1993). |
Clark et al., “C. elegans cell-signalling gene sem-5 encodes a protein with SH2 and SH3 domains,” Nature, 356:340-344 (1992). |
Damen et al., “The 145-kDa protein induced to associate with Shc by multiple cytokines is an inositol tetraphosphate and phosphatidylinositol 3, 4, 5-triphosphate 5-phosphatase,” PNAS, 09301689-1693 (1996). |
Fantl et al., “Distinct Phosphotyrosines on a Growth Factor Receptor Bind to Specific Molecules that Mediate Different Signalling Pathways,” Cell, 69:413 (1992). |
Hawkins et al., “Platelet-derived growth factor stimulates synthesis of PtdIns (3,4,5)P(3) by activating a PtdIns (4,5)P(2) 3-OH Kinase,” Nature, 358:157-159 (1992). |
Henja et al., “Cloning and Characterization of a Human cDNA (INPPLI) Sharing Homology with Inositol Polyphosphate Phosphatases,” Genomics, 29:285-287 (1995). |
Hu et al., “Binding of NCK to SOS and Activation of ras-Dependant Gene Expression,” Mol. Cell. Biol., 15:1169-1174 (1995). |
Jackson et al., “Phosphatidylinositol 3,4,5-triphosphate is a substrate for the 75 kDA inositol polyphosphate 5-phosphatase and a novel 5-phosphatase which forms a complex with the p85/p110 form of phosphonositide 3-kinase,” The EMBO Journal, 14(18):4490-4500 (1995). |
Janknecht et al., “Signal Integration at the c-fos Promoter,” Carcinogenesis, 16(3):443-450 (1995). |
Katzav et al., “vav, a Novel Human Oncogene Derived from a Locus Ubiquitously Expressed in Hematopoietic Cell,” EMBO J., 8:2283-2290 (1989). |
Kavanaugh et al., “Multiple forms of an inositol polyphosphate 5-phosphatase form signalling complexes with Shc and Grb2,” (Research paper) Current Biology, 6(4):438-445 (1996). |
Klippel et al., “The C-Terminal SH2 Domain of p85 Accounts for the High Affinity and Specificity of the Binding of Phosphatidylinositol 3-Kinase to Phosphorylated Platelet-Derived Growth Factor .beta. Receptor,” Mol. Cell Biol., 12(4):1451-1459 (1992). |
Laxminarayan et al., “Characterization of cDNA Encoding the 43-kDA Membrane-associated Inositol-polyphosphate 5-Phosphatase,” J. Biol. Chem., 270(18):10800-10805 (1995). |
Maruta et al., “Regulation of the Ras signalling Network,” Bioessays, 16(7):489-496 (1994). |
Motto et al., “In vivo association of Grb2 with pp116, a substrate of the T-cell antigen receptor-activated protein tyrosine kinase,” J. Biol. Chem., 269(34):21608-21613 (1994). |
Norris et al., “The Isolation and Characterization of cDNA Encoding Human and Rat Brain Inositol Polyphosphate 4-Phosphatase,” J. Biol. Chem., 270(18):16128-16133 (1995). |
Odai, H. “The Proto-oncogene Product c-Cbl Becomes Tyrosine Phosphorylated by Stimulation with GM-CSF or Epo and Constitutivity Binds to the SH3 Domain of Grb2/Ash in Human Hematopoietic Cells,” J. Biol. Chem., 270(18):10800-10805 (1995). |
Piechaczyk et al., “c-fos Proto-Oncogene Regulation and Function,” Crit. Rev. Oncol./Hematol., 17(2):93-131 (1994). |
Pot et al., “Cloning and Characterization of a Novel Grb2 Associateing Protein Binding Through the SH3 Domains of Grb2; Similarity to Inositol Polyphosphate 5' Phosphatase,” Conference on Signal Transduction of Normal and Tumor Cell, Banff, Alberta, Canada, 4/1-61995. |
Stephens et al., “Pathway of phosphatidylinositol(3,4,5)-triphosphate synthesis in activated neutrophils,” Nature, 351:33-39 (1991). |
Stern et al., “The Human GRB2 and Drosophila Drk Genes CAn Functionally Replace the Caenorhabditis elegads Cell Signalling Gene sem-5,” Mol. Biol. Cell, 4:1175-1188 (1993). |
Valius et al., “Phospholipase C-.gamma.1 and Phosphatidylinositol 3 Kinase are the Downstream Mediators of the PDGF Receptor's Mitogenic Signal,” Cell, 73:321 (1993). |
York et al., “Isolation and heterologous expression of a cDNA encoding bovine inositol polyphosphate 1-phosphatase,” PNAS, 87:9548-9552 (1990). |