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Akimaru, H., Chen, Y., Dai, P., Hou, D. X., Nonaka, M., Smolik, S. M., Armstrong, S., Goodman, R. H. and Ishii, S (1997). Drosophila CBP isa co-activator of cubitus interruptus in hedgehog signalling. Nature 386, 735-738.[Medline]

Akimaru, H., Hou, D. X. and Ishii, S (1997). Drosophila CBP is required for dorsal-dependent twist gene expression. Nat. Genet 17, 211-214.[Medline]

Aronson, B. D., Fisher, A. L., Blechman, K., Caudy, M. and Gergen, J. P (1997). Groucho-dependent and-independent repression activities of Runt domain proteins. Mol. Cell. Biol 17, 5581-5587.[Abstract]

Ashe, H. L. and Levine, M (1999). Local inhibition and long-range enhancement of Dpp signal transduction by Sog. Nature 398, 427-431.[Medline]

Beg, A. A., Ruben, S. M., Scheinman, R. I., Haskill, S., Rosen, C. A. and Baldwin, A. S., Jr (1992). I kappa B interacts with the nuclear localization sequences of the subunits of NF-kappa B: a mechanism for cytoplasmic retention. Genes Dev 6, 1899-1913.[Abstract/Free Full Text]

Bella\225che, Y., Bandyopadhyay, R., Desplan, C. and Dostatni, N (1996). Neither the homeodomain nor the activation domain of Bicoid is specifically required for its down-regulation by the Torso receptor tyrosine kinase cascade. Development 122, 3499-3508.[Abstract]

Belvin, M. P. and Anderson, K. V (1996). A conserved signaling pathway: the Drosophila toll-dorsal pathway. Annu. Rev. Cell Dev. Biol 12, 393-416.[Medline]

Biehs, B., Francois, V. and Bier, E (1996). The Drosophila short gastrulation gene prevents Dpp from autoactivating and suppressing neurogenesis in the neuroectoderm. Genes Dev 10, 2922-2934.[Abstract/Free Full Text]

Bushdid, P. B., Brantley, D. M., Yull, F. E., Blaeuer, G. L., Hoffman, L. H., Niswander, L. and Kerr, L. D (1998). Inhibition of NF-kappaB activity results in disruption of the apical ectodermal ridge and aberrant limb morphogenesis. Nature 392, 615-618.[Medline]

Cagan, R. L., Kr\212mer, H., Hart, A. C. and Zipursky, S. L (1992). The bride of sevenless and sevenless interaction: internalization of a transmembrane ligand. Cell 69, 393-399.[Medline]

Cai, H. N., Arnosti, D. N. and Levine, M (1996). Long-range repression in the Drosophila embryo. Proc. Natl. Acad. Sci. USA 93, 9309-9314.[Abstract/Free Full Text]

Carey, M (1998). The enhanceosome and transcriptional synergy. Cell 92, 5-8.[Medline]

Chasman, D. I., Leatherwood, J., Carey, M., Ptashne, M. and Kornberg, R. D (1989). Activation of yeast polymerase II transcription by herpesvirus VP16 and GAL4 derivatives in vitro. Mol. Cell. Biol 9, 4746-4749.[Abstract/Free Full Text]

Chen, G. and Courey, A. J (2000). Groucho/TLE family proteins and transcriptional repression. Gene 249, 1-16.[Medline]

Conlan, R. S., Gounalaki, N., Hatzis, P. and Tzamarias, D (1999). The Tup1-Cyc8 protein complex can shift from a transcriptional co-repressor to a transcriptional co-activator. J. Biol. Chem 274, 205-210.[Abstract/Free Full Text]

Drier, E. A., Huang, L. H. and Steward, R (1999). Nuclear import of the Drosophila Rel protein Dorsal is regulated by phosphorylation. Genes Dev 13, 556-568.[Abstract/Free Full Text]

Dubnicoff, T., Valentine, S. A., Chen, G., Shi, T., Lengyel, J. A., Paroush, Z. and Courey, A. J (1997). Conversion of dorsal from an activator to a repressor by the global corepressor Groucho. Genes Dev 11, 2952-2957.[Abstract/Free Full Text]

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, 2670-2677.[Abstract]

Fisher, A. L. and Caudy, M (1998). Groucho proteins: transcriptional corepressors for specific subsets of DNA-binding transcription factors in vertebrates and invertebrates. Genes Dev 12, 1931-40.[Free Full Text]

Gay, N. J. and Keith, F. J (1990). Formation of a gradient of the Drosophila dorsal morphogen by differential nuclear localisation. BioEssays 12, 181-182.[Medline]

Goldstein, R. E., Jimenez, G., Cook, O., Gur, D. and Paroush, Z (1999). Huckebein repressor activity in Drosophila terminal patterning is mediated by Groucho. Development 126, 3747-3755.[Abstract]

Govind, S., Brennan, L. and Steward, R (1993). Homeostatic balance between dorsal and cactus proteins in the Drosophila embryo. Development 117, 135-148.[Abstract]

Govind, S., Drier, E., Huang, L. H. and Steward, R (1996). Regulated nuclear import of the Drosophila rel protein dorsal: structure-function analysis. Mol. Cell. Biol 16, 1103-1114.[Abstract]

Han, K. and Manley, J. L (1993). Functional domains of the Drosophila Engrailed protein. EMBO J 12, 2723-33.[Medline]

Henkel, T., Zabel, U., van Zee, K., Muller, J. M., Fanning, E. and Baeuerle, P. A (1992). Intramolecular masking of the nuclear location signal and dimerization domain in the precursor for the p50 NF-kappa B subunit. Cell 68, 1121-1133.[Medline]

Huang, A. M., Rusch, J. and Levine, M (1997). An anteroposterior Dorsal gradient in the Drosophila embryo. Genes Dev 11, 1963-1973.[Abstract/Free Full Text]

Huang, J. D., Schwyter, D. H., Shirokawa, J. M. and Courey, A. J (1993). The interplay between multiple enhancer and silencer elements defines the pattern of decapentaplegic expression. Genes Dev 7, 694-704.[Abstract/Free Full Text]

Huang, J. D., Dubnicoff, T., Liaw, G. J., Bai, Y., Valentine, S. A., Shirokawa, J. M., Lengyel, J. A. and Courey, A. J (1995). Binding sites for transcription factor NTF-1/Elf-1 contribute to the ventral repression of decapentaplegic. Genes Dev 9, 3177-3189.[Abstract/Free Full Text]

Ip, Y. T., Kraut, R., Levine, M. and Rushlow, C. A (1991). The dorsal morphogen is a sequence-specific DNA-binding protein that interacts with a long-range repression element in Drosophila. Cell 64, 439-446.[Medline]

Ip, Y. T., Park, R. E., Kosman, D., Yazdanbakhsh, K. and Levine, M (1992). dorsal-twist interactions establish snail expression in the presumptive mesoderm of the Drosophila embryo. Genes Dev 6, 1518-1530.[Abstract/Free Full Text]

Isoda, K., Roth, S. and Nusslein-Volhard, C (1992). The functional domains of the Drosophila morphogen dorsal: evidence from the analysis of mutants. Genes Dev 6, 619-630.[Abstract/Free Full Text]

Janody, F., Sturny, R., Catala, F., Desplan, C. and Dostatni, N (2000). Phosphorylation of bicoid on MAP-kinase sites: contribution to its interaction with the torso pathway. Development 127, 279-289.[Abstract]

Jiang, J., Kosman, D., Ip, Y. T. and Levine, M (1991). The dorsal morphogen gradient regulates the mesoderm determinant twist in early Drosophila embryos. Genes Dev 5, 1881-1891.[Abstract/Free Full Text]

Jiang, J., Rushlow, C. A., Zhou, Q., Small, S. and Levine, M (1992). Individual dorsal morphogen binding sites mediate activation and repression in the Drosophila embryo. EMBO J 11, 3147-3154.[Medline]

Jiang, J., Cai, H., Zhou, Q. and Levine, M (1993). Conversion of a dorsal-dependent silencer into an enhancer: evidence for dorsal corepressors. EMBO J 12, 3201-3209.[Medline]

Jimenez, G., Paroush, Z. and Ish-Horowicz, D (1997). Groucho acts as a corepressor for a subset of negative regulators, including Hairy and Engrailed. Genes Dev 11, 3072-3082.[Abstract/Free Full Text]

Jimenez, G., Verrijzer, C. P. and Ish-Horowicz, D (1999). A conserved motif in goosecoid mediates groucho-dependent repression in Drosophila embryos. Mol. Cell. Biol 19, 2080-2087.[Abstract/Free Full Text]

Jimenez, G., Guichet, A., Ephrussi, A. and Casanova, J (2000). Relief of gene repression by torso RTK signaling: role of capicua in Drosophila terminal and dorsoventral patterning. Genes Dev 14, 224-231.[Abstract/Free Full Text]

Kanegae, Y., Tavares, A. T., Izpisua Belmonte, J. C. and Verma, I. M (1998). Role of Rel/NF-kappaB transcription factors during the outgrowth of the vertebrate limb. Nature 392, 611-614.[Medline]

Kirov, N., Zhelnin, L., Shah, J. and Rushlow, C (1993). Conversion of a silencer into an enhancer: evidence for a co-repressor in dorsal-mediated repression in Drosophila. EMBO J 12, 3193-3199.[Medline]

Kirov, N., Childs, S., O'Connor, M. and Rushlow, C (1994). The Drosophila dorsal morphogen represses the tolloid gene by interacting with a silencer element. Mol. Cell. Biol 14, 713-722.[Abstract/Free Full Text]

Kumar, S., Rabson, A. B. and Gelinas, C (1992). The RxxRxRxxC motif conserved in all Rel/kappa B proteins is essential for the DNA-binding activity and redox regulation of the v-Rel oncoprotein. Mol. Cell. Biol 12, 3094-3106.[Abstract/Free Full Text]

Levanon, D., Goldstein, R. E., Bernstein, Y., Tang, H., Goldenberg, D., Stifani, S., Paroush, Z. and Groner, Y (1998). Transcriptional repression by AML1 and LEF-1 is mediated by the TLE/Groucho corepressors. Proc. Natl. Acad. Sci. USA 95, 11590-11595.[Abstract/Free Full Text]

Liaw, G. J., Rudolph, K. M., Huang, J. D., Dubnicoff, T., Courey, A. J. and Lengyel, J. A (1995). The torso response element binds GAGA and NTF-1/Elf-1, and regulates tailless by relief of repression. Genes Dev 9, 3163-3176.[Abstract/Free Full Text]

Merika, M., Williams, A. J., Chen, G., Collins, T. and Thanos, D (1998). Recruitment of CBP/p300 by the IFN beta enhanceosome is required for synergistic activation of transcription. Mo. Cell 1, 277-287.

Morisato, D. and Anderson, K. V (1995). Signaling pathways that establish the dorsal-ventral pattern of the Drosophila embryo. Annu. Rev. Genet 29, 371-399.[Medline]

Pan, D. J., Huang, J. D. and Courey, A. J (1991). Functional analysis of the Drosophila twist promoter reveals a dorsal-binding ventral activator region. Genes Dev 5, 1892-1901.[Abstract/Free Full Text]

Pan, D. and Courey, A. J (1992). The same dorsal binding site mediates both activation and repression in a context-dependent manner. EMBO J 11, 1837-1842.[Medline]

Parkhurst, S. M (1998). Groucho: making its Marx as a transcriptional co-repressor. Trends Genet 14, 130-132.[Medline]

Pham, A. D., Muller, S. and Sauer, F (1999). Mesoderm-determining transcription in Drosophila is alleviated by mutations in TAF(II)60 and TAF(II)110. Mech. Dev 84, 3-16.[Medline]

Ray, R. P., Arora, K., Nusslein-Volhard, C. and Gelbart, W. M (1991). The control of cell fate along the dorsal-ventral axis of the Drosophila embryo. Development 113, 35-54.[Abstract]

Rubin, G. M. and Spradling, A. C (1983). Vectors for P element-mediated gene transfer in Drosophila. Nucleic Acids Res 11, 6341-6351.[Abstract/Free Full Text]

Rusch, J. and Levine, M (1994). Regulation of the dorsal morphogen by the Toll and torso signaling pathways: a receptor tyrosine kinase selectively masks transcriptional repression. Genes Dev 8, 1247-1257.[Abstract/Free Full Text]

Rusch, J. and Levine, M (1996). Threshold responses to the dorsal regulatory gradient and the subdivision of primary tissue territories in the Drosophila embryo. Curr. Opin. Genet. Dev 6, 416-423.[Medline]

Shirokawa, J. M. and Courey, A. J (1997). A direct contact between the dorsal rel homology domain and Twist may mediate transcriptional synergy. Mol. Cell. Biol 17, 3345-3355.[Abstract]

Smith, S. T. and Jaynes, J. B (1996). A conserved region of engrailed, shared among all en-, gsc-, Nk1-, Nk2-and msh-class homeoproteins, mediates active transcriptional repression in vivo. Development 122, 3141-3150.[Abstract]

Stein, D., Goltz, J. S., Jurcsak, J. and Stevens, L (1998). The Dorsal-related immunity factor (Dif) can define the dorsal-ventral axis of polarity in the Drosophila embryo. Development 125, 2159-2169.[Abstract]

Steward, R (1987). Dorsal, an embryonic polarity gene in Drosophila, is homologous to the vertebrate proto-oncogene, c-rel. Science 238, 692-694.[Abstract/Free Full Text]

Tautz, D. and Pfeifle, C (1989). A non-radioactive in situ hybridization method for the localization of specific RNAs in Drosophila embryos reveals translational control of the segmentation gene hunchback. Chromosoma 98, 81-85.[Medline]

Thanos, D. and Maniatis, T (1995). Virus induction of human IFN beta gene expression requires the assembly of an enhanceosome. Cell 83, 1091-1100.[Medline]

Tolkunova, E. N., Fujioka, M., Kobayashi, M., Deka, D. and Jaynes, J. B (1998). Two distinct types of repression domain in engrailed: one interacts with the groucho corepressor and is preferentially active on integrated target genes. Mol. Cell. Biol 18, 2804-2814.[Abstract/Free Full Text]

Valentine, S. A., Chen, G., Shandala, T., Fernandez, J., Mische, S., Saint, R. and Courey, A. J (1998). Dorsal-mediated repression requires the formation of a multiprotein repression complex at the ventral silencer. Mol. Cell. Biol 18, 6584-6594.[Abstract/Free Full Text]

Westendorf, J. J. and Hiebert, S. W (1999). Mammalian runt-domain proteins and their roles in hematopoiesis, osteogenesis, and leukemia. J. Cell. Biochem 32, 51-58.

Xiao, H. and Lis, J. T (1989). Heat shock and developmental regulation of the Drosophila melanogaster hsp83 gene. Mol.Cell. Biol 9, 1746-1753.[Abstract/Free Full Text]

Xu, X. and Gelinas, C (1997). A mutant Rel-homology domain promotes transcription by p50/NFkappaB1. Oncogene 14, 1521-1530.[Medline]

Zhou, J., Zwicker, J., Szymanski, P., Levine, M. and Tjian, R (1998). TAFII mutations disrupt Dorsal activation in the Drosophila embryo. Proc. Natl. Acad. Sci. USA 95, 13483-13488.[Abstract/Free Full Text]




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