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Appel, B. and Eisen, J. S (1998). Regulation of neuronal specification in the zebrafish spinal cord by Delta function. Development 125, 371-80.[Abstract]

Bailey, A. M. and Posakony, J. W (1995). Suppressor of hairless directly activates transcription of enhancer of split complex genes in response to Notch receptor activity. Genes Dev 9, 2609-22.[Abstract/Free Full Text]

Bierkamp, C. and Campos-Ortega, J. A (1993). A zebrafish homologue of the Drosophila neurogenic gene Notch and its pattern of transcription during early embryogenesis. Mech. Dev 43, 87-100.[Medline]

Campos-Ortega, J. A (1993). Mechanisms of early neurogenesis in Drosophilamelanogaster. J. Neurobiol 24, 1305-27.[Medline]

Carmena, A., Bate, M. and Jimenez, F (1995). Lethal of scute , a proneural gene, participates in the specification of muscle progenitors during Drosophila embryogenesis. Genes Dev 9, 2373-83.[Abstract/Free Full Text]

Chitnis, A. and Kintner, C (1996). Sensitivity of proneural genes to lateral inhibition affects the pattern of primary neurons in Xenopus embryos. Development 122, 2295-301.[Abstract]

Chitnis, A., Henrique, D., Lewis, J., Ish-Horowicz, D. and Kintner, C (1995). Primary neurogenesis in Xenopus embryos regulated by a homologue of the Drosophila neurogenic gene Delta. Nature 375, 761-6.[Medline]

Coffman, C., Harris, W. and Kintner, C (1990). Xotch, the Xenopus homolog of Drosophila notch. Science 249, 1438-41.[Abstract/Free Full Text]

Coffman, C. R., Skoglund, P., Harris, W. A. and Kintner, C. R (1993). Expression of an extracellular deletion of Xotch diverts cell fate in Xenopus embryos. Cell 73, 659-71.[Medline]

Conlon, R. A., Reaume, A. G. and Rossant, J (1995). Notch1 is required for the coordinate segmentation of somites. Development 121, 1533-45.[Abstract]

Corbin, V., Michelson, A. M., Abmayr, S. M., Neel, V., Alcamo, E., Maniatis, T. and Young, M. W (1991). A role for the Drosophila neurogenic genes in mesoderm differentiation. Cell 67, 311-23.[Medline]

Couso, J. P., Knust, E. and Martinez Arias, A (1995). Serrate and wingless cooperate to induce vestigial gene expression and wing formation in Drosophila. Curr. Biol 5, 1437-48.[Medline]

de Celis, J. F., de Celis, J., Ligoxygakis, P., Preiss, A., Delidakis, C. and Bray, S (1996). Functional relationships between Notch, Su(H) and the bHLH genes of the E(spl) complex: the E(spl) genes mediate only a subset of Notch activities during imaginal development. Development 122, 2719-28.[Abstract]

de la Pompa, J. L., Wakeham, A., Correia, K. M., Samper, E., Brown, S., Aguilera, R. J., Nakano, T., Honjo, T., Mak, T. W., Rossant, J., et al (1997). Conservation of the Notch signalling pathway in mammalian neurogenesis. Development 124, 1139-48.[Abstract]

Del Amo, F. F., Smith, D. E., Swiatek, P. J., Gendron-Maguire, M., Greenspan, R. J., McMahon, A. P. and Gridley, T (1992). Expression pattern of Motch, a mouse homolog of Drosophila Notch, suggests an important role in early postimplantation mouse development. Development 115, 737-44.[Abstract]

Devoto, S. H., Melancon, E., Eisen, J. S. and Westerfield, M (1996). Identification of separate slow and fast muscle precursor cells in vivo, prior to somite formation. Development 122, 3371-80.[Abstract]

Dornseifer, P., Takke, C. and Campos-Ortega, J. A (1997). Overexpression of a zebrafish homologue of the Drosophila neurogenic gene Delta perturbs differentiation of primary neurons and somite development. Mech. Dev 63, 159-71.[Medline]

Dunwoodie, S. L., Henrique, D., Harrison, S. M. and Beddington, R. S (1997). Mouse Dll3: a novel divergent Delta gene which may complement the function of other Delta homologues during early pattern formation in the mouse embryo. Development 124, 3065-76.[Abstract]

Fisher, A. L., Ohsako, S. and Caudy, M (1996). The WRPW motif of the hairy-related basic helix-loop-helix repressor proteins acts as a 4-amino-acid transcription repression and protein-protein interaction domain. Mol. Cell Biol 16, 2670-7.[Abstract]

Giebel, B. and Campos-Ortega, J. A (1997). Functional dissection of the Drosophila enhancer of split protein, a suppressor of neurogenesis. Proc. Natl Acad. Sci. USA 94, 6250-4.[Abstract/Free Full Text]

Haddon, C., Smithers, L., Schneider-Maunoury, S., Coche, T., Henrique, D. and Lewis, J (1998). Multiple delta genes and lateral inhibition in zebrafish primary neurogenesis. Development 125, 359-70.[Abstract]

Haenlin, M., Kunisch, M., Kramatschek, B. and Campos-Ortega, J. A (1994). Genomic regions regulating early embryonic expression of the Drosophila neurogenic gene Delta. Mech. Dev 47, 99-110.[Medline]

Hartenstein, A. Y., Rugendorff, A., Tepass, U. and Hartenstein, V (1992). The function of the neurogenic genes during epithelial development in the Drosophila embryo. Development 116, 1203-20.[Abstract]

Heitzler, P., Bourouis, M., Ruel, L., Carteret, C. and Simpson, P (1996). Genes of the Enhancer of split and achaete-scute complexes are required fora regulatory loop between Notch and Delta during lateral signalling in Drosophila. Development 122, 161-71.[Abstract]

Hrabe de Angelis, M., McIntyre, J. 2. and Gossler, A (1997). Maintenance of somite borders in mice requires the Delta homologue DII1. Nature 386, 717-21.[Medline]

Jen, W. C., Wettstein, D., Turner, D., Chitnis, A. and Kintner, C (1997). The Notch ligand, X-Delta-2, mediates segmentation of the paraxial mesoderm in Xenopus embryos. Development 124, 1169-78.[Abstract]

Kimmel, C. B., Ballard, W. W., Kimmel, S. R., Ullmann, B. and Schilling, T. F (1995). Stages of embryonic development of the zebrafish. Dev. Dyn 203, 253-310.[Medline]

Klein, T. and Martinez-Arias, A (1998). Interactions among Delta , Serrate and Fringe modulate Notch activity during Drosophila wing development. Development 125, 2951-2962.[Abstract]

Knust, E., H. Schrons, F. Grawe and J. A. Campos-Ortega (1992). Seven genes of the Enhancer of split complex of Drosophila melanogaster encode helix-loop-helix proteins. Genetics 132, 505-18.[Abstract]

Kopan, R., Nye, J. S. and Weintraub, H (1994). The intracellular domain of mouse Notch: a constitutively activated repressor of myogenesis directed at the basic helix-loop-helix region of MyoD. Development 120, 2385-96.[Abstract/Free Full Text]

Kunisch, M., Haenlin, M. and Campos-Ortega, J. A (1994). Lateral inhibition mediated by the Drosophila neurogenic gene Delta is enhanced by proneural proteins. Proc. Natl. Acad. Sci. USA 91, 10139-43.[Abstract/Free Full Text]

Lardelli, M. and Lendahl, U (1993). Motch A and motch B, two mouse Notch homologues coexpressed in a wide variety of tissues. Exp. Cell Res 204, 364-72.[Medline]

Lecourtois, M. and Schweisguth, F (1995). The neurogenic suppressor of hairless DNA-binding protein mediates the transcriptional activation of the enhancer of split complex genes triggered by Notch signaling. Genes Dev 9, 2598-608.[Abstract/Free Full Text]

Miller, J. B., Teal, S. B. and Stockdale, F. E (1989). Evolutionarily conserved sequences of striated muscle myosin heavy chain isoforms. Epitope mapping by cDNA expression. J. Biol. Chem 264, 13122-30.[Abstract/Free Full Text]

Nakao, K. and Campos-Ortega, J. A (1996). Persistent expression of genes of the enhancer of split complex suppresses neural development in Drosophila. Neuron 16, 275-86.[Medline]

Nornes, S., Mikkola, I., Krauss, S., Delghandi, M., Perander, M. and Johansen, T (1996). Zebrafish Pax9 encodes two proteins with distinct C-terminal transactivating domains of different potency negatively regulated by adjacent N-terminal sequences. J. Biol. Chem 271, 26914-23.[Abstract/Free Full Text]

Nye, J. S., Kopan, R. and Axel, R (1994). An activated Notch suppresses neurogenesis and myogenesis but not gliogenesis in mammalian cells. Development 120, 2421-30.[Abstract/Free Full Text]

Oellers, N., Dehio, M. and Knust, E (1994). bHLH proteins encoded by the Enhancer of split complex of Drosophila negatively interfere withtranscriptional activation mediated by proneural genes. Mol. Gen. Genet 244, 465-73.[Medline]

Oka, C., Nakano, T., Wakeham, A., de la Pompa, J. L., Mori, C., Sakai, T., Okazaki, S., Kawaichi, M., Shiota, K., Mak, T. W., et al (1995). Disruption of the mouse RBP-J kappa gene results in early embryonic death. Development 121, 3291-301.[Abstract]

Panin, V.M., Papayannopolos, V., Wilson, R. and Irvine, K.D (1997). fringe modulates Notch-ligand interactions. Nature 387, 908-912.[Medline]

Paroush, Z., Finley, R., Jr., Kidd, T., Wainwright, S. M., Ingham, P. W., Brent, R. and Ish-Horowicz, D (1994). Groucho is required for Drosophila neurogenesis, segmentation, and sex determination and interacts directly with hairy-related bHLH proteins. Cell 79, 805-15.[Medline]

Ruohola, H., Bremer, K. A., Baker, D., Swedlow, J. R., Jan, L. Y. and Jan, Y. N (1991). Role of neurogenic genes in establishment of follicle cell fate and oocyte polarity during oogenesis in Drosophila. Cell 66, 433-49.[Medline]

Sasai, Y., Kageyama, R., Tagawa, Y., Shigemoto, R. and Nakanishi, S (1992). Two mammalian helix-loop-helix factors structurally related to Drosophila hairy and Enhancer of split. Genes Dev 6, 2620-34.[Abstract/Free Full Text]

Schrons, H., Knust, E. and Campos-Ortega, J. A (1992). The Enhancer of split complex and adjacent genes in the 96F region of Drosophila melanogaster are required for segregation of neural and epidermal progenitor cells. Genetics 132, 481-503.[Abstract]

Shawber, C., Nofziger, D., Hsieh, J. J., Lindsell, C., Bogler, O., Hayward, D. and Weinmaster, G (1996). Notch signaling inhibits muscle cell differentiation through a CBF1-independent pathway. Development 122, 3765-73.[Abstract]

Tepass, U. and Hartenstein, V (1994). Epithelium formation in the Drosophila midgut depends on the interaction of endoderm and mesoderm. Development 120, 579-90.[Abstract]

Turner, D. L. and Weintraub, H (1994). Expression of achaete-scute homolog 3 in Xenopus embryos converts ectodermal cells to a neural fate. Genes Dev 8, 1434-47.[Abstract/Free Full Text]

Warga, R. M. and Kimmel, C. B (1990). Cell movements during epiboly and gastrulation in zebrafish. Development 108, 569-80.[Abstract/Free Full Text]

Wettstein, D. A., Turner, D. L. and Kintner, C (1997). The Xenopus homolog of Drosophila Suppressor of Hairless mediates Notch signaling during primary neurogenesis. Development 124, 693-702.[Abstract]

Xu, T., Caron, L. A., Fehon, R. G. and Artavanis-Tsakonas, S (1992). The involvement of the Notch locus in Drosophila oogenesis. Development 115, 913-22.[Abstract]


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