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Boubel\222k, M., Dr\207berov\207, L. and Dr\207ber, P (1996). Carbohydrate-mediated sorting in aggregating embryonal carcinoma cells. Biochem. Biophys. Res. Commun 224, 283-288.[Medline]

Cho, S. K., Yeh, J., Cho, M. and Cummings, R. D (1996). Transcriptional regulation of1,3-galactosyltransferase in embryonal carcinoma cells by retinoid acid. Masking of Lewis X antigens by -galactosylation. J. Biol. Chem 271, 3238-3246.[Abstract/Free Full Text]

Cornell, R. A. and Kimelman, D (1994). Activin-mediated mesoderm induction requires FGF. Development 120, 453-462.[Abstract]

Deng, C.-X., Wynshaw-Boris, A., Shen, M. M., Daugherty, C., Ornitz, D. M. and Leder, P (1994). Murine FGFR-1 is required for early postimplantation growth and axial organization. Genes Dev 8, 3045-3057.[Abstract/Free Full Text]

Dvor\377\207k, P., Flechon, J.-E., Thompson, E. M., Hor\207k, V., Adenot, P. and Renard, J. P (1997). Embryoglycans regulate FGF-2-mediated mesoderm induction in the rabbit. J. Cell Sci 110, 1-10.[Abstract]

Gao, G. and Goldfarb, M (1995). Heparin can activate a receptor tyrosine kinase. EMBO J 14, 2183-2190.[Medline]

Gotoh, Y., Masuyama, N., Suzuki, A., Ueno, N. and Nishida, E (1995). Involvement of the MAP kinase cascade in Xenopus mesoderm induction. EMBO J 14, 2491-2498.[Medline]

Green, P. J., Walsh, F. S. and Doherty, P (1996). Promiscuity of fibroblast growth factor receptors. BioEssays 18, 639-646.[Medline]

Heldin, C.-H (1995). Dimerization of cell surface receptors in signal transduction. Cell 80, 213-223.[Medline]

Herr, A. B., Ornitz, D. M., Sasisekharan, R., Venkataraman, G. and Waksman, G (1997). Heparin-induced self-association of fibroblast growth factor-2. Evidence for two oligomerization processes. J. Biol. Chem 272, 16382-16389.[Abstract/Free Full Text]

Hill, D. J., Tevaarwerk, G. J., Arany, E., Kilkenny, D., Gregory, M., Langford, K. S. and Miell, J (1995). Fibroblast growth factor-2 (FGF-2) is present in maternal and cord serum, and in the mother is associated with a binding protein immunologically related to the FGF receptor-1. J. Clin. Endocrinol. Metab 80, 1822-1831.[Abstract]

Ishihara, M., Tyrrell, D. J., Stauber, G. B., Brown, S., Cousens, L. S. and Stack, R. J (1993). Preparation of affinity-fractionated, heparin-derived oligosaccharides and their effects on selected biological activities mediated by basic fibroblast growth factor. J. Biol. Chem 268, 4675-4683.[Abstract/Free Full Text]

Ishihara, M., Shaklee, P. N., Yang, Z., Liang, W., Wei, Z., Stack, R. J. and Holme, K (1994). Structural features in heparin which modulate specific biological activities mediated by basic fibroblast growth factor. Glycobiology 4, 451-458.[Abstract/Free Full Text]

Kanai, M., G\232ke, M., Tsunekawa, S. and Podolsky, D. K (1997). Signal transduction pathway of human fibroblast growth factor receptor 3. Identification of a novel 66-kDa phosphoprotein. J. Biol. Chem 272, 6621-6628.[Abstract/Free Full Text]

Kilkenny, D. M. and Hill, D. J (1996). Perinuclear localization of an intracellular binding protein related to the fibroblast growth factor (FGF) receptor 1 is temporally associated with the nuclear trafficking of FGF-2 in proliferating epiphyseal growth plate chondrocytes. Endocrinology 137, 5078-5089.[Abstract]

Kimber, S. J., Brown, D. G., Pahlsson, P. and Nilsson, B (1993). Carbohydrate antigen expression in murine embryonic stem cells and embryos. II. Sialylated antigens and glycolipid analysis. Histochem. J 25, 628-641.[Medline]

Klagsbrun, M. and Baird, A (1991). A dual receptor system is required for basic fibroblast growth factor activity. Cell 67, 229-231.[Medline]

Kojima, N., Fenderson, B. A., Stroud, M. R., Goldberg, R. I., Habermann, R., Toyokuni, T. and Hakomori, S (1994). Further studies on cell adhesion based on Le(x)-Le(x) interaction, with new approaches: embryoglycan aggregation of F9 teratocarcinoma cells, and adhesion of various tumour cells based on Le(x) expression. Glycoconj. J 11, 238-248.[Medline]

Krufka, A., Guimond, S. and Rapraeger, A. C (1996). Two hierarchies of FGF-2 signaling in heparin: mitogenic stimulation and high-affinity binding/receptor transphosphorylation. Biochemistry 35, 11131-11141.[Medline]

Landgren, E., Blume-Jensen, P., Courtneidge, S. A. and Claesson-Welsh, L (1995). Fibroblast growth factor receptor-1 regulation of Src family kinases. Oncogene 10, 2027-2035.[Medline]

Lawson, K. A., Meneses, J. J. and Pedersen, R. A (1991). Clonal analysis of epiblast fate during germ layer formation in the mouse. Development 113, 891-911.[Abstract]

Maher, P. A (1995). Identification and characterization of a novel, intracellular isoform of fibroblast growth factor receptor-1 (FGFR-1). J. Cell. Physiol 169, 380-390.

Mali, M., Elenius, K., Miettinen, H. M. and Jalkanen, M (1993). Inhibition of basic fibroblast growth factor-induced growth promotion by overexpression of syndecan-1. J. Biol. Chem 268, 24215-24222.[Abstract/Free Full Text]

McDonald, F. J. and Heath, J. K (1994). Developmentally regulated expression of fibroblast growth factor receptor genes and splice variants by murine embryonic stem and embryonal carcinoma cells. Dev. Genet 15, 148-154.[Medline]

Mummery, C. L., van Rooyen, M., Bracke, M., van den Eijnden-van Raaij, J., van Zoelen, J. and Alitalo, K (1993). Fibroblast growth factor-mediated growth regulation and receptor expression in embryonal carcinoma and embryonic stem cells and human germ cell tumours. Biochem. Biophys. Res. Commun 191, 188-195.[Medline]

Muramatsu, T (1984). Cell surface glycoproteins as markers in monitoring in vitro differentiation of embryonal carcinoma cells. Cell Differ 15, 101-108.[Medline]

Muslin, A. J., Peters, K. G. and Williams, L. T (1994). Direct activation of Phospholipase C-by fibroblast growth factor receptor is not required for mesoderm induction in Xenopus animal caps. Mol. Cell. Biol 14, 3006-3012.[Abstract/Free Full Text]

Ornitz, D. M., Yayon, A., Flanagan, J. G., Svahn, C. M., Levi, E. and Leder, P (1992). Heparin is required for cell-free binding of basic fibroblast growth factor to a soluble receptor and for mitogenesis in whole cells. Mol. Cell. Biol 12, 240-247.[Abstract/Free Full Text]

Ornitz, D. M., Herr, A. B., Nilsson, M., Westman, J., Svahn, C-M. and Waksman, G (1995). FGF binding and FGF receptor activation by synthetic heparan-derived di-and trisaccharides. Science 268, 432-436.[Abstract/Free Full Text]

Peters, K. G., Marie, J., Wilson, E., Ives, H. E., Escobedo, J., Del Rosario, M., Mirda, D. and Williams L. T (1992). Point mutation of an FGF receptor abolished phosphatidylinositol turnover and Ca2+flux but not mitogenesis. Nature 358, 678-681.[Medline]

Safran, A., Avivi, A., Orr-Urtereger, A., Neufeld, G., Lonai, P., Givol, D. and Yarden, Y (1990). The murine flg gene encodes a receptor for fibroblast growth factor. Oncogene 5, 635-643.[Medline]

Schlessinger, J., Lax, I. and Lemmon, M (1995). Regulation of growth factor activation by proteoglycans: What is the role of the low affinity receptors?. Cell 83, 357-360.[Medline]

Shaoul, E., Reich-Slotky, R., Berman, B. and Ron, D (1995). Fibroblast growth factor receptors display both common and distinct signaling pathways. Oncogene 10, 1553-1561.[Medline]

Smith, J. C (1993). Mesoderm-inducing factors in early vertebrate development. EMBO J 12, 4463-4470.[Medline]

Spivak-Kroizman, T., Lemmon, M. A., Dikic, I., Ladbury, J. E., Pinchasi, D., Huang, J., Jaye, M., Crumley, G., Schlessinger, J. and Lax, I (1994). Heparin-induced oligomerization of FGF molecules is responsible for FGF receptor dimerization, activation, and cell proliferation. Cell 79, 1015-1024.[Medline]

Subramanian, S. V., Fitzgerald, M. L. and Bernfield, M (1997). Regulated shedding of syndecan-1 and-4 ectodomains by thrombin and growth factor receptor activation. J. Biol. Chem 272, 14713-14720.[Abstract/Free Full Text]

Tanahashi, T., Suzuki, M., Imamura, T. and Mitsui, Y (1996). Identification of a 79-kDa heparin-binding fibroblast growth factor (FGF) receptor in rat hepatocytes and its correlation with the different growth responses to FGF-1 between hepatocyte subpopulations. J. Biol. Chem 271, 8221-8227.[Abstract/Free Full Text]

Venkataraman, G., Sasisekharan, V., Herr. A. B., Ornitz, D. M., Waksman, G., Cooney, C. L., Langer, R. and Sasisekharan, R (1996). Preferential self-association of basic fibroblast growth factor is stabilized by heparin during receptor dimerization and activation. Proc. Nat. Acad. Sci. USA 93, 845-850.[Abstract/Free Full Text]

Verlhac, M. H., Kubiak, J. Z., Clarke, H. J. and Maro, B (1994). Microtubule and chromatin behavior follow MAP kinase activity but not MPF activity during meiosis in mouse oocytes. Development 120, 1017-1025.[Abstract]

Yayon, A., Klagsbrun, M., Esko, J. D., Leder, P. and Ornitz, D. M (1991). Cell surface, heparin-like molecules are required for binding of basic fibroblast growth factor to its high affinity receptor. Cell 64, 841-848.[Medline]

Yayon, A., Ma, Y.-S., Safran, M., Klagsbrun, M. and Halaban, R (1997). Suppression of autocrine cell proliferation and tumorigenesis of human melanoma cells and fibroblast growth factor transformed fibroblasts by a kinase-deficient FGF receptor 1: evidence for the involvement of Src-family kinases. Oncogene 14, 2999-3009.[Medline]




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