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Adam, J., Myat, A., Le Roux, I., Eddison, M., Henrique D., Ish-Horowicz, D. and Lewis, J (1998). Cell fate choices and the expression of Notch, Delta and Serrate homologues in the chick inner ear: parallels with Drosophila sense-organ development. Development 125, 4645-4654.[Abstract]

Ahmad, I., Zagouras, P. and Artavanis-Tsakonas, S (1995). Involvement of Notch-1 in mammalian retinal neurogenesis: association of Notch-1 activity with both immature and terminally differentiated cells. Mech. Dev 53, 73-85.[Medline]

Artavanis-Tsakonas, S., Rand, M. D. and Lake, R. J (1999). Notchsignaling: Cell fate control and signal integration in development. Science 284, 770-776.[Abstract/Free Full Text]

Austin, C. P., Feldman, D. E., Ida, J. A. Jr. and Cepko, C. L (1995). Vertebrate retinal ganglion cells are selected from competent progenitors by the action of Notch. Development 121, 3637-3650.[Abstract]

Axelrod, J. D., Matsuno, K.,Artavanis-Tsakonas, S. and Perrimon, N (1996). Interaction between Wingless and Notch signaling pathways mediated by Dishevelled. Science 271, 1826-1832.[Abstract]

Bennet, C. F., Chiang, M. Y., Chan, H., Shoemaker, J. E. E. and Mirabelli, C. K (1992). Cationic lipids enhance cellular uptake and activity of phosphorothioate antisense oligonucleotides. Mol. Pharmacol 41, 1023-1033.[Abstract]

Bettenhausen, B., Hrabe de Angelis, M., Simon, D., Guenet, J. L. and Gossler., A (1995). Transient and restricted expression during mouse embryogenesis of Dll1, a murine gene closely related to D rosophila Delta. Development 121, 2407-2418.[Abstract]

Capaccioli, S., Di Pasquale, G., Mini, E., Mazzei, T. and Quattrone, A (1993). Cationic lipids improve antisense oligonucleotide uptake and prevent degradation in cultured cells and in human serum. Biochem. Biophys. Res. Commun 197, 818-825.[Medline]

Copper, M. T. and Bray, S. J (1999). Frizzled regulation of Notch signalling polarizes cell fate in the Drosophila eye. Nature 397, 526-530.[Medline]

Crowe, R., Henrique, D., Ish-Horowicz, D. and Niswander, L (1998). A new role for Notch and Delta in cell fate decisions: patterning the feather array. Development 125, 767-775.[Abstract]

de la Poma, J. L., Wakeham, A., Correia, K. M., Samper, E., Brown, S., Aguillera, R. J. Nakano, T., Honjo, T., Mak, T. W., Rossant, J. and Conlon, R. A (1997). Conservation of the Notch signaling pathway in mammalian neurogenesis. Development 124, 1139-1148.[Abstract]

Dorsky, R. I., Chang, W. S., Rapaport, D. H. and Harris, W. A (1997). Regulation of neuronal diversity in the Xenopus retina by Delta signaling. Nature 385, 67-70.[Medline]

Ellissen, L., Bird, J., West, D. C., Soreng., A. L., Reynolds, T. C., Smith, S. D. and Sklar, J (1991). TAN-1, the human homolog of the D rosophila Notch gene, is broken by chromosomal translocations in T lymphoblastic neoplasms. Cell 66, 649-661.[Medline]

Fekete, D. M (1996). Cell fate specification in the inner ear. Curr. Opin. Neurobiol 6, 533-541.[Medline]

Haddon, C., Jiang, Y. L., Smithers, L. and Lewis, J (1998). Delta-Notch signalling and the patterning of sensory cell differentiation in the zebrafish ear: evidence from the mind bomb mutant. Development 125, 4637-4644.[Abstract]

Heitzler, P. and Simpson, P (1991). The choice of cell fate in the epidermis of Drosophila. Cell 64, 1083-1092.[Medline]

Kelley, M. W., Talreja, D. R. and Corwin, J. T (1995). Replacement of hair cells after laser microbeam irradiation in cultured organs of Corti from embryonic and neonatal mice. J. Neurosci 15, 3013-3026.[Abstract]

Kopan, R. and Turner, D. L (1996). The Notch pathway: democracy and aristocracy in the selection of cell fate. Curr. Opin. Neurobiol 6, 594-601.[Medline]

Lanford, P. J., Lan, Y., Jiang, R., Lindsell, C., Weinmaster, G., Gridley, T. and Kelley, M. W (1999). Notch signaling pathway mediates hair cell development in mammalian cochlea. Nature Genetics 21, 289-292.[Medline]

Lardelli, M., Dahlstrand, J. and Lendahl, U (1994). The novel Notch homologue mouse Notch3 lacks specific epidermal growth factor-repeats and is expressed in proliferating neuroepithelium. Mech. Dev 46, 123-136.[Medline]

Lewis, A. K., Frantz, G., Carpenter, D., de Sauvage, F. J. and Gao, W. Q (1998). Distinct expression patterns of Notch family receptors and ligands during development of the mammalian inner ear. Mech. Dev 78, 159-163.[Medline]

Lewis, J (1996). Neurogenic genes and vertebrates neurogenesis. Curr. Opin. Neurobiol 6, 3-10.[Medline]

Lindsell, C. E., Shawber, C. J., Boulter, J. and Weinmaster, G (1995). Jagged: A mammalian ligand that activates Notch1. Cell 80, 909-917.[Medline]

Moon, R. T., Brown, J. D. and Torres, M (1997). WNTs modulates cell fates and behavior during vertebrate development. Trends Genet 13, 157-162.[Medline]

Morrison, A, Hodgetts, C., Gossler, A., Hrabe de Angelis, M. and Lewis, J (1999). Expression of Delta1 and Serrate 1(Jagged1) in the mouse inner ear. Mech. Dev 84, 169-172.[Medline]

Romand, R., Zine, A. and Hafidi, A (1993). Ontogenesis of F-actin in hair cells. Cell Motil. Cytoskeleton 25, 213-222.[Medline]

Sestan, N., Artavanis-Tsakonas, S. and Rakic, P (1999). Contact-dependant inhibition of cortical neurite growth mediated by Notch signaling. Science 286, 741-746.[Abstract/Free Full Text]

Shawber, C., Boulter, J., Lindsell, C. E. and Weinmaster, G (1996). Jagged2: a serrate-like gene expressed during rat embryogenesis. Dev. Biol 180, 370-376.[Medline]

Swiatek., P. J., Lindsell, C. E., Franko del Amo, F., Weinmaster, G. and Gridley, T (1994). Notch 1 is essential for postimplantation development in mice. Genes Dev 8, 707-719.[Abstract/Free Full Text]

Uyttendaele, H., Marazzi, G., Wu, G., Yan, Q., Sassoon, D and Kitajewski. J (1996). Notch-4/int-3, a mammary protooncogene, is an endothelial cell-specific mammalian notch gene. Development 122, 2251-2259.[Abstract]

Wang, S., Sdrulla, A. D., diSibio, G., Bush, G., Nofziger, D., Hicks, C., Weinmaster, G. and Barres, B.A (1998). Notch receptor activation inhibits oligodendrocyte differentiation. Neuron 21, 63-75.[Medline]

Weinmaster, G., Roberts, V. J. and Lemke, G (1992). Notch2: A second mammalian Notch gene. Development 116, 931-941.[Abstract]

Wilkinson, H. A., Fitzgerald, K. and Greenwald, I (1994). Reciprocal changes in expression of the receptor lin -12 and its ligand lag -2 prior to commitment in a C. elegans cell fate decision. Cell 79, 1187-1198.[Medline]

Xue, Y., Gao., X., Lindsell, C. E. Norton, C. R., Chang, B., Hicks, C., Gendron-Maguire, M., Rand, E. B., Weinmaster., G. and Gridely, T (1999). Embryonic lethality and vascular defects in mice lacking the Notch ligand Jagged1. Human Mol. Genetics 8, 723-730.[Abstract/Free Full Text]

Zimrin, A. B., Pepper, M. S., McMahon, G. A., Nguyen, F., Montesano, R. and Maciag, T (1996). An antisense oligonucleotide to the Notch ligand Jagged enhances fibroblast growth factor-induced angiogenesis in vitro. J. Biol. Chem 271, 32499-32502.[Abstract/Free Full Text]

Zine, A. and Romand, R (1996). Development of the auditory receptors of the rat: a SEM study. Brain Res 721, 49-58.[Medline]

Zine, A. and de Ribaupierre, F (1998). Replacement of mammalian auditory hair cells. NeuroReport 9, 263-268.[Medline]




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