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Basler, K. and Struhl, G. ( (1994). Compartment boundaries and the control of Drosophila limb pattern by hedgehog protein. Nature 368, 208-214.[Medline]

Blackman, R. K., Sanicola, M., Raftery, L. A., Gillevet, T. and Gelbart, W. M. ( (1991). An extensive 3cis-regulatory region directs the imaginal disk expression of decapentaplegic, a member of the TGF-beta family in Drosophila. Development 111, 657-66.[Abstract]

Blair, S. ( (1992). engrailed expression in the anterior lineage compartment of the developing wing blade of Drosophila. Development 115, 21-34.[Abstract]

Blair, S. S., Brower, D. L., Thomas, J. B. and Zavortink, M. ( (1994). The role of apterous in the control of dorsoventral compartmentalization and PS integrin gene expression in the developing wing of Drosophila. Development 120, 1805-1815.[Abstract]

Busturia, A. and Morata, G. ( (1988). Ectopic expression of homeotic genes caused by the elimination of the Polycomb gene in Drosophila imaginal epidermis. Development 104, 713-20.[Abstract/Free Full Text]

Campbell, G., Weaver, T. and Tomlinson, A. ( (1993). Axis specification inthe developing Drosophila appendage: the role of wingless, decapentaplegic, and the homeobox gene aristaless. Cell 74, 1113-1123.[Medline]

Capdevila, J., Estrada, M. P., Sanchez-Herrero, E. and Guerrero, I. ( (1994). The Drosophila segment polarity gene patched interacts with decapentaplegic in wing development. EMBO J 13, 71-82.[Medline]

Capdevila, J. and Guerrero, I. ( (1994). Targeted expression of the signaling molecule decapentaplegic induces pattern duplications and growth alterations in Drosophila wings. EMBO J 13, 4459-4468.[Medline]

Crick, F. H. and Lawrence, P. A. ( (1975). Compartments and polyclones in insect development. Science 189, 340-347.[Free Full Text]

Diaz-Benjumea, F. J. and Cohen, S. M. ( (1993). Interaction between dorsal and ventral cells in the imaginal disc directs wing development in Drosophila. Cell 75, 741-752.[Medline]

DiNardo, S., Kuner, J. M., Theis, J. and O'Farrell, P. H. ( (1985). Development of embryonic pattern in D. melanogaster as revealed by accumulation of the nuclear engrailed protein. Cell 43, 59-69.[Medline]

Evan, G. I., Lewis, G. K., Ramsay, G., and Bishop, J. M. ( (1985). Isolation of monoclonal antibodies specific for human c-myc protooncogene product. Mol. Cell. Biol 5, 3610-3616.[Abstract/Free Full Text]

Ferguson, E. L. and Anderson, K. V. ( (1992). Decapentaplegic acts as a morphogen to organize dorsal-ventral pattern in the Drosophila embryo. Cell 71, 451-461.[Medline]

Garcia-Bellido, A., Ripoll, P. and Morata, G. ( (1973). Developmental compartmentalisation of the wing disk of Drosophila. Nature New Biol 245, 251-253.[Medline]

Garcia-Bellido, A., Ripoll, P. and Morata, G. ( (1976). Developmental compartmentalization in the dorsal mesothoracic disc of Drosophila. Dev Biol 48, 132-147.[Medline]

Golic, K. ( (1991). Site-specific recombination between homologous chromosomes in Drosophila. Science 252, 958-961.[Abstract/Free Full Text]

Hama, C., Ali, Z. and Kornberg, T. B. ( (1990). Region-specific recombination and expression are directed by portions of the Drosophila engrailed promoter. Genes Dev 4, 1079-1093.[Abstract/Free Full Text]

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

Heemskirk, J. and Dinardo, S. ( (1994). Drosophila hedgehog acts as a morphogen in cellular patterning. Cell 76, 449-460.[Medline]

Hidalgo, A. ( (1994). Three distinct roles for the engrailed gene in Drosophila wing development. Current Biology 4, 1087-1098.[Medline]

Irvine, K. D. and Wieschaus, E. ( (1994). fringe, a boundary-specific signaling molecule, mediates interactions between dorsal and ventral cells during Drosophila wing development. Cell 79, 595-606.[Medline]

Jackson, P. D., and Hoffmann, F. M. ( (1994). Embryonic expression patterns of the Drosophila decapentaplegic gene: separate regulatory elements control blastoderm expression and lateral ectodermal expression. Developmental Dynamics 199, 28-44.[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]

Kornberg, T., Siden, I., O'Farrell, P. and Simon, M. ( (1985). The engrailed locus of Drosophila: in situ localization of transcripts reveals compartment-specific expression. Cell 40, 45-53.[Medline]

Lawrence, P. A. and Morata, G. ( (1976). Compartments in the wing of Drosophila: a study of the engrailed gene. Dev. Biol 50, 321-337.[Medline]

Lawrence, P. A. and Morata, G. ( (1977). The early development of mesothoracic compartments in Drosophila. An analysis of cell lineage and fate mapping and an assessment of methods. Dev. Biol 56, 40-51.[Medline]

Lawrence, P. A. and Struhl, G. ( (1982). Further studies of the engrailed phenotype in Drosophila. EMBO J 1, 827-833.[Medline]

Lee, J. J., von-Kessler, D. P., Parks, S. and Beachy, P. A. ( (1992). Secretion and localized transcription suggest a role in positional signaling for products of the segmentation gene hedgehog. Cell 71, 33-50.[Medline]

Lepage, T., Cohen, S. M., Diaz-Benjumea, F. J., and Parkhurst, S. M.( (1995). Signal transduction by cAMP-dependent protein kinase A in Drosophila limb patterning. Nature 373, 711-715.[Medline]

Li, W., Ohlmeyer, J. T., Lane, M. E., and Kalderon, D. ( (1995). Function of protein kinase A in hedgehog signbal transduction and Drosophila imaginal disc develoment. Cell 80, 553-562.[Medline]

Meinhardt, H. ( (1983). Cell determination boundaries as organizing regions for secondary embryonic fields. Dev. Biol 96, 375-385.[Medline]

Mohler, J. and Vani, K. ( (1992). Molecular organization and embryonic expression of the hedgehog gene involved in cell-cell communication in segmental patterning of Drosophila. Development 115, 957-971.[Abstract]

Morata, G., Kornberg, T. and Lawrence, P. A. ( (1983). The phenotype of engrailed mutations in the antenna of Drosophila. Dev. Biol 99, 27-33.[Medline]

Morata, G. and Lawrence, P. A. ( (1975). Control of compartment development by the engrailed gene in Drosophila. Nature 255, 614-617.[Medline]

Padgett, R. W., St, J. R. and Gelbart, W. M. ( (1987). A transcript from a Drosophila pattern gene predicts a protein homologous to the transforming growth factor-beta family. Nature 325, 81-84.[Medline]

Pan, D. and Rubin, G. M. ( (1995). cAMP-dependent protein protein kinase and hedgehog act antagonistically in regulating decapentaplegic transcription in Drosophila imaginal discs. Cell 80, 543-552.[Medline]

Panganiban, G. E., Rashka, K. E., Neitzel, M. D. and Hoffmann, F. M. ( (1990). Biochemical characterization of the Drosophila dpp protein, a member of the transforming growth factor beta family of growth factors. Mol. Cell Biol 10, 2669-2677.[Abstract/Free Full Text]

Patel, N. H., Martin-Blanco, E., Coleman, K. G., Poole, S. J., Ellis, M. C., Kornberg, T. B. and Goodman, C. S. ( (1989). Expression of engrailed proteins in Arthropods, Annelids, and Chordates. Cell 58, 955-968.[Medline]

Perrimon, N.B. ( (1995). Hedgehog and beyond. Cell 80, 517-520.[Medline]

Poole, S. J., Kauvar, L. M., Drees, B. and Kornberg, T. ( (1985). The engrailed locus of Drosophila: structural analysis of an embryonic transcript. Cell 40, 37-43.[Medline]

Posakony, L. G., Raftery, L. A. and Gelbart, W. M. ( (1990). Wing formation in Drosophila melanogaster requires decapentaplegic gene function along the anterior-posterior compartment boundary. Mech. Dev 33, 69-82.[Medline]

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]

Sanicola, M. Sekelsky, J., Elson, S. and Gelbart, W. M. ( (1995). Drawing a stripe in the Drosophila imaginal discs: negative regulation of decapentaplegic and patched expression by engrailed. Genetics 139, 745-756.[Abstract]

Segal, D. and Gelbart, W. M. ( (1985). Shortvein, a new component of the decapentaplegic gene complex in Drosophila melanogaster. Genetics 109, 119-143.[Abstract/Free Full Text]

Spencer, F. A., Hoffmann, F. M. and Gelbart, W. M. ( (1982). Decapentaplegic: A gene complex affecting morphogenesis in Drosophila melanogaster. Cell 28, 451-461.[Medline]

Struhl, G. and Basler, K. ( (1993). Organizing activity of wingless protein in Drosophila. Cell 72, 527-540.[Medline]

Tabata, T., Eaton, S. and Kornberg, T. B. ( (1992). The Drosophila hedgehog gene is expressed specifically in posterior compartment cells and is a target of engrailed regulation. Genes Dev 6, 2635-2645.[Abstract/Free Full Text]

Tabata, T. and Kornberg, T. B. ( (1994). Hedgehog is a signaling protein with a key role in patterning Drosophila imaginal discs. Cell 76, 89-102.[Medline]

Tashiro, S., Michiue, T., Higashijima, S., Zenno, S., Ishimaru, S., Takahashi, F., Orihara, M., Kojima, T. and Saigo, K. ( (1993). Structure and expression of hedgehog, a Drosophila segment-polarity gene required for cell-cell communication. Gene 124, 183-189.[Medline]

Tickle, C. ( (1981). The number of polarizing region cells required to specify additional digits in the developing chick wing. Nature 289, 295-298.[Medline]

Tickle, C., Summerbell, D. and Wolpert, L. ( (1975). Positional signaling and specification of digits in chick limb morphogenesis. Nature 254, 199-202.[Medline]

Vincent, J. P. and O'Farrell, P. H. ( (1992). The state of engrailed expression is not clonally transmitted during early Drosophila development. Cell 68, 923-931.[Medline]

Wharton, K. A., Ray, R. P. and Gelbart, W. M. ( (1993). An activity gradient of decapentaplegic is necessary for the specification of dorsal pattern elements in the Drosophila embryo. Development 117, 807-816.[Abstract]

Williams, J. A., Paddock, S. W., Vorwerk, K. and Carroll, S. B. ( (1994). Organization of wing formation and induction of a wing-patterning gene at the dorsal/ventral compartment boundary. Nature 368, 299-305.[Medline]

Xu, T. and Rubin, G. M. ( (1993). Analysis of genetic mosaics in developing and adult Drosophila tissues. Development 117, 1223-1237.[Abstract]




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