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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]

Berleth, T., Burri, M., Thoma, G., Bopp, D., Richstein, S., Frigerio, G., Noll, M. and Nusslein-Volhard, C (1988). The role of bicoid RNA in organizing the anterior pattern of the Drosophila embryo. EMBO J 7, 1749-1756.[Medline]

Blumberg, B., Wright, C. V., De Robertis, E. M. and Cho, K. W (1991). Organizer-specific homeobox genes in Xenopus laevis embryos. Science 253, 194-196.[Abstract/Free Full Text]

Chan, S. K., Jaffe, M., Capovilla, M., Botas, J. and Mann, R.S (1994). The DNA binding specificity of Ultrabithorax is modulated by cooperative interactions with Extradenticle, another homeoprotein. Cell 78, 603-615.[Medline]

Chang, C. P., Shen, W. F., Rozenfeld, S., Lawrence, H. J., Largman, C. and Cleary, M. L (1995). Pbx proteins display hexapeptide-dependent cooperative DNA binding with a subset of Hox proteins. Genes Dev 9, 663-674.[Abstract/Free Full Text]

Condie, B. G. and Harland, R. M (1987). Posterior expression of a homeobox gene in early Xenopus embryos. Development 101, 93-105.[Abstract]

Desplan C., Theis J., and O'Farrell P.H (1988). The sequence specificity of Homeodomain-DNA interaction. Cell 54, 1081-1090.[Medline]

Driever, W. and Nusslein-Volhard, C (1989). The Bicoid protein is a positive regul1ator of hunchback transcription in the early Drosophila embryo. Nature 337, 138-143.[Medline]

Fainsod, A., Steinbeisser, H. and De Robertis, E. M (1994). On the function of BMP-4 in patterning the marginal zone of the Xenopus embryo. EMBO J 13, 5015-5025.[Medline]

Gehring, W. J., Qian, Y. Q., Billeter, M., Furukubo-Tokunaga, K., Schier, A. F., Resendez-Perez, D., Affolter, M., Otting, G. and Wutrich, K (1994). Homeodomain-DNA recognition. Cell 78, 211-223.[Medline]

Gray, S., Szymanski, P. and Levine, M (1994). Short-range repression permits multiple enhancers to function autonomously within a complex promoter. Genes Dev 8, 1829-1838.[Abstract/Free Full Text]

Grueneberg, D. A., Natesan, S., Alexandre, C. and Gilman, M. Z (1992). Human and Drosophila homeodomain proteins that enhance the DNA-binding activity of serum response factor. Science 257, 1089-1095.[Abstract/Free Full Text]

Hahn, M. and J\212ckle, H (1996). Drosophila goosecoid participates in neural development but not in body axis formation. EMBO J 15, 3077-3084.[Medline]

Halazonetis, T. D., Georgopoulos, K., Greenberg, M. E. and Leder, P (1988). c-Jun dimerizes with itself and with c-Fos, forming complexes of different DNA binding affinities. Cell 55, 917-924.[Medline]

Han, K., Levine, M. S. and Manley, J. L (1989). Synergistic activation and repression of transcription by Drosophila homeobox proteins. Cell 56, 573-583.[Medline]

Han, K. and Manley, J. L (1993). Functional domains of the Drosophila Engrailed proteins. EMBO J 12, 2723-2733.[Medline]

Han, K. and Manley, J. L (1993). Transcriptional repression by the Drosophila Even-skipped protein: definition of a minimal repression domain. Genes Dev 7, 491-503.[Abstract/Free Full Text]

Hayashi, S. and Scott, M. P (1990). What determines the specificity of action of Drosophila homeodomain proteins?. Cell 63, 883-894.[Medline]

Hemmati-Brivanlou, A., de la Torre, J. R., Holt, C. and Harland, R. M (1991). Cephalic expression and molecular characterization of Xenopus En-2. Development 111, 715-724.[Abstract]

Hemmati-Brivanlou, A., Frank, D., Bolce, M. E., Brown, B. D., Sive, H. L. and Harland, R. M (1990). Localization of specific mRNAs in Xenopus embryos by whole-mount in situ hybridization. Development 110, 325-330.[Abstract/Free Full Text]

Jaynes, J. B. and O'Farrell, P. H (1988). Activation and repression of transcription by homoeodomain-containing proteins that bind a common site. Nature 336, 744-749.[Medline]

Jaynes, J. B. and O'Farrell, P. H (1991). Active repression of transcription by the Engrailed homeodomain protein. EMBO J 10, 1427-1433.[Medline]

John, A., Smith, S. T. and Jaynes, J. B (1995). Inserting the Ftz homeodomain into Engrailed creates a dominant transcriptional repressor that specifically turns off Ftz target genes in vivo. Development 121, 1801-1813.[Abstract]

Johnson, A. D (1995). The price of repression. Cell 81, 655-658.[Medline]

Kao, K. R. and Elinson, R. P (1988). The entire mesodermal mantle behaves as Spemann's organizer in dorsoanterior enhanced Xenopus laevis embryos. Dev. Biol 127, 64-77.[Medline]

Krasnow, M. A., Saffman, E. E., Kornfeld, K. and Hogness, D. S (1989). Transcriptional activation and repression by Ultrabithorax proteins in cultured Drosophila cells. Cell 57, 1031-1043.[Medline]

Lamonaire, T., Tremblay, J. J., Lanctot, C., Therrien, M., Gauthier, Y. and Drouin, J (1996). Ptx 1, a bicoid -related homeobox transcription factor involved in transcription of the pro-opiomelanocortin gene. Genes Dev 10, 1284-1295.[Abstract/Free Full Text]

Levine, M. and Manley, J. L (1989). Transcriptional repression of eukaryotic promoters. Cell 59, 405-408.[Medline]

Licht, J. D., Grossel, M. J., Figge, J. and Hansen, U. M (1990). Drosophila Kruppel protein is a transcriptional repressor. Nature 346, 76-79.[Medline]

Logan, C., Hanks, M. C., Noble-Topham, S., Nallainathan, D. and Provart, N. J (1992). Cloning and sequence comparison of the mouse, human, and chicken engrailed genes reveal potential functional domains and regulatory regions. Dev. Genet 13, 345-358.[Medline]

Ma X., Yuan, D., Diepold, K., Scarborough, T. and Ma, J (1996). The Drosophila morphogenetic protein Bicoid binds DNA cooperatively. Development 122, 1195-1206.[Abstract]

Pannese, M., Polo, C., Andreazzoli, M., Vignali, R., Kablar, B., Barsacchi, G. and Boncinelli, E (1995). The Xenopus homologue of Otx-2 is a maternal homeobox gene that demarcates and specifies anterior body regions. Development 121, 707-720.[Abstract]

Peers, B., Sharma, S., Johnson, T., Kamps, M. and Monteminy, M (1995). The pancreatic islet factor STF-1 binds cooperatively with Pbx to a regulatory element in the somatostatin promoter: importance of the FPWMK motif and of the homeodomain. Mol. Cell. Biol 15, 7091-7097.[Abstract]

Peltenburg, L. T. and Murre, C (1996). Engrailed and Hox homeodomain proteins contain a related Pbx interaction motif that recognizes a common structure present in Pbx. EMBO J 15, 3385-93.[Medline]

Phelan, M. L., Rambaldi, I. and Featherstone, M. S (1995). Cooperative interactions between Hox and Pbx proteins mediated by a conserved peptide motif. Mol. Cell. Biol 15, 3989-3997.[Abstract]

Rivera-Perez, J. A., Mallo, M., Gendron-Maguire, M., Gridley, T. and Behringer, R. R (1995). goosecoid is not an essential component of the mouse gastrula organizer but is required for cranofacial and rib development. Development 121, 3005-3012.[Abstract]

Ronchi, E., Treisman, J., Dostatni, N., Struhl, G. and Desplan, C (1993). Down-regulation of the Drosophila morphogen bicoid by the torso receptor-mediated signal transduction cascade. Cell 74, 347-355.[Medline]

Sasai, Y., Lu, B., Steinbeisser, H., Geissert, D., Gont, L. K. and De Robertis, E. M (1994). Xenopuschordin : a novel dorsalizing factor activated by organizer-specific homeobox genes. Cell 79, 779-790.[Medline]

Sauer, F., Fondell, J. D., Ohkuma, Y., Roeder, R. G. and J\212ckle, H (1995). Control of transcription by Kruppel through interactions with TFIIB and TFIIE. Nature 375, 162-164.[Medline]

Sauer, F. and J\212ckle, H (1995). Heterodimeric Drosophila gap gene protein complexes acting as transcriptional repressors. EMBO J 14, 4773-4780.[Medline]

Small, S., Kraut, R., Hoey, T., Warrior, R. and Levine, M (1991). Transcriptional regulation of a pair-rule stripe in Drosophila. Genes Dev 5, 827-839.[Abstract/Free Full Text]

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]

Taira, M., Jamrich, M., Good, P. J. and Dawid, I. B (1992). The LIM domain-containing homeobox gene Xlim-1 is expressed specifically in the organizer region of Xenopus gastrula embryos. Genes Dev 6, 356-366.[Abstract/Free Full Text]

Treisman, J., G\232nczy, P., Vashishtha, M., Harris, E. and Desplan, C (1989). A single amino acid can determine the DNA binding specificity of homeodomain proteins. Cell 59, 553-562.[Medline]

Treisman, J., Harris, E. and Desplan, C (1991). The paired box encodes a second DNA-binding domain in the Paired homeodomain protein. Genes Dev 5, 594-604.[Abstract/Free Full Text]

van Dijk, M. A. and Murre, C (1994). extradenticle raises the DNA binding specificity of homeotic selector gene products. Cell 78, 617-624.[Medline]

Voss, J. W., Wilson, L. and Rosenfeld, M. G (1991). POU-domain proteins Pit-1 and Oct-1 interact to form a heteromeric complex and can cooperate to induce expression of the prolactin promoter. Genes Dev 5, 1309-1320.[Abstract/Free Full Text]

White, R (1994). Homeodomain proteins. Homeotic genes seek partners. Curr. Biol 4, 48-50.[Medline]

Wilson, D., Sheng, G., Lecuit, T., Dostatni, N. and Desplan, C (1993). Cooperative dimerization of paired class homeodomains on DNA. Genes Dev 7, 2120-2134.[Abstract/Free Full Text]

Wilson, D. S. and Desplan, C (1995). Homeodomain proteins. Cooperating to be different. Curr. Biol 5, 32-34.[Medline]

Wilson, D. S., Guenther, B., Desplan, C. and Kuryian, J (1995). High resolution Crystal structure of a Paired (Pax) class cooperative homeodomain dimer on DNA. Cell 82, 709-719.[Medline]

Yamada, G., Mansouri, A., Torres, M., Stuart, E. T., Blum, M., Schultz, M., De Robertis, E. and Gruss, P (1995). Targeted mutation of the murine goosecoid gene results in cranofacial defects and neonatal death. Development 121, 2917-2922.[Abstract]

Yoshinaga, S. K. and Yamamoto, K. R (1991). Signaling and regulation by a mammalian glucocorticoid receptor in Drosophila cells. Mol. Endocrinol 5, 844-853.[Abstract]

Yuan, D., Ma, X. and Ma, J (1996). Sequences outside the homeodomain of Bicoid are required for protein-protein interactions. J. Biol. Chem 271, 21660-216665.[Abstract/Free Full Text]




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