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Aaronson, S. A (1991). Growth factors and cancer. Science 254, 1146-1153.[Abstract/Free Full Text]

Baker, N. E. and Rubin, G. M (1989). Effect on eye development of dominant mutations in Drosophila homologue of the EGF receptor. Nature 340, 150-153.[Medline]

Baker, N. E. and Zitron, A. E (1995). Drosophila eye development: Notch and Delta amplify a neurogenic pattern conferred on the morphogenetic furrow by scabrous. Mech. Dev 49, 173-189.[Medline]

Banerjee, U. and Zipursky, S. L (1990). The role of cell-cell interaction in the development of the Drosophila visual system. Neuron 4, 177-187.[Medline]

Begemann, G., Michon, A.-M., van de Voorn, L., Wepf, R. and Mlodzik, M (1995). The Drosophila orphan nuclear receptor Seven-up requires the Ras pathway for its function in photoreceptor determination. Development 121, 225-235.[Abstract]

Bermingham-McDonogh, O., McCabe, K. L. and Reh, T. A (1996). Effects of GGF/neuregulins on neuronal survival and neurite outgrowth correlatewith erbB2/neu expression in developing rat retina. Development 122, 1427-1438.[Abstract]

Bier, E., Jan, L. Y. and Jan, Y. N (1990). rhomboid, a gene required for dorsoventral axis establishment and peripheral nervous system development in Drosophila melanogaster. Genes Dev 4, 190-203.[Abstract/Free Full Text]

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]

Cagan, R. L. and Ready, D. F (1989). Notch is required for successive cell decisions in the developing Drosophila retina. Genes Dev 3, 1099-1112.[Abstract/Free Full Text]

Clark, I., Giniger, E., Ruohola-Baker, H., Jan, L. Y. and Jan, Y. N (1994). Transient posterior localization of a kinesin fusion protein reflects anteroposterior polarity of the Drosophila oocyte. Curr. Biol 4, 289-300.[Medline]

Clifford, R. and Schupbach, T (1992). The torpedo (DER) receptor tyrosine kinase is required at multiple times during Drosophila embryogenesis. Development 115, 853-872.[Abstract]

Crews, S. T., Thomas, J. B. and Goodman, C. S (1988). The Drosophila single-minded gene encodes a nuclear protein with sequence similarity to the per gene product. Cell 52, 143-151.[Medline]

Daga, A., Karlovich, C. A., Dumstrei, K. and Banerjee, U (1996). Patterning of cells in the Drosophila eye by lozenge , which shares homologous domains with AML1. Genes Dev 10, 1194-1205.[Abstract/Free Full Text]

Dequin, R., Saumweber, H. and Sedat, J. W (1984). Proteins shifting from the cytoplasm into the nuclei during early embryogenesis of Drosophila melanogaster. Dev. Biol 104, 37-48.[Medline]

Derynck, R (1992). The physiology of transforming growth factor-. Adv. Cancer Res 58, 27-52.[Medline]

Dickson, B., Sprenger, F. and Hafen, E (1992). Prepattern in the developing Drosophila eye revealed by an activated torso- sevenless chimeric receptor. Genes Dev 6, 2327-2339.[Abstract/Free Full Text]

Freeman, M (1994). The spitz gene is required for photoreceptor determination in the Drosophila eye where it interacts with the EGF receptor. Mech. Dev 48, 25-33.[Medline]

Fujita, S. C., Zipursky, S. L., Benzer, S., Ferr\234s, A. and Shotwell, S. L (1982). Monoclonal antibodies against the Drosophila nervous system. Proc. Natl. Acad. Sci. USA 79, 7929-7933.[Abstract/Free Full Text]

Heberlein, U., Hariharan, I. K. and Rubin, G. M (1993). Star is required for neuronal differentiation in the Drosophila retina and displays dosage-sensitive interactions with Ras 1. Dev. Biol 160, 51-63.[Medline]

Heberlein, U. and Moses, K (1995). Mechanisms of Drosophila retinal morphogenesis: the virtues of being progressive. Cell 81, 987-990.[Medline]

Higashijima, S.-i., Kojima, T., Michiue, T., Ishimaru, S., Emori, Y. and Saigo, K (1992). Dual Bar homeo box genes of Drosophila required in two photoreceptor cells, R1 and R6, and primary pigment cells for normal eye development. Genes Dev 6, 50-60.[Abstract/Free Full Text]

Huang, Z. and Kunes, S (1996). Hedgehog, transmitted along retinal axons, triggers neurogenesis in the developing visual centers of the Drosophila brain. Cell 86, 411-422.[Medline]

Jarman, A. P., Grell, E. H., Ackerman, L., Jan, L. Y. and Jan, Y. N (1994). atonal is the proneural gene for Drosophila photoreceptors. Nature 369, 398-400.[Medline]

Kl\212mbt, C (1993). The Drosophila gene pointed encodes two ETS-like proteins which are involved in the development of the midline glial cells. Development 117, 163-176.[Abstract]

Kolodkin, A. L., Pickup, A. T., Lin, D. M., Goddman, C. S. and Banerjee, U (1994). Characterization of Star and its interactions with sevenless and EGF receptor during photoreceptor cell development in Drosophila. Development 120, 1731-1745.[Abstract]

Kr\212mer, H., Cagan, R. L. and Zipursky, S. L (1991). Interaction of bride of sevenless membrane-bound ligand and the sevenless tyrosine-kinase receptor. Nature 352, 207-212.[Medline]

Langer-Safer, P. R., Levine, M. and Ward, D. C (1982). Immunological method for mapping genes on Drosophila polytene chromosomes. Proc. Natl. Acad. Sci. USA 79, 4381-4385.[Abstract/Free Full Text]

Lehman, R (1995). Cell-cell signaling, microtubules, and the loss of symmetry in the Drosophila oocyte. Cell 83, 353-356.[Medline]

Lillien, L (1995). Changes in retinal cell fate induced by overexpression of EGF receptor. Nature 377, 158-162.[Medline]

Luetteke, N. C., Phillips, H. K., Qiu, T. H., Copeland, N. G., Earp, H. S., Jenkins, N. A. and Lee, D. C (1994). The mouse waved-2 phenotype results from a point mutation in the EGF receptor tyrosine kinase. Genes Dev 8, 399-413.[Abstract/Free Full Text]

Luetteke, N. C., Qiu, T. H., Peiffer, R. L., Oliver, P., Smithies, O. and Lee, D. C (1993). TGFdeficiency results in hair follicle and eye abnormalities in targeted and waved-1 mice. Cell 73, 263-278.[Medline]

Mann, G. B., Fowler, K. J., Gabriel, A., Nice, E. C., Williams, R. L. and Dunn, A. R (1993). Mice with a null mutation of the TGFgene have abnormal skin architecture, wavy hair, and curly whiskers and often develop corneal inflammation. Cell 73, 249-261.[Medline]

Marshall, C. J (1995). Specificity of receptor tyrosine kinase signaling: transient versus sustained extracellular signal-regulated kinase activation. Cell 80, 179-185.[Medline]

Massague, J (1990). Transforming growth factor-. J. Biol. Chem 265, 21393-21396.[Free Full Text]

Mayer, U. and Nusslein-Volhard, C (1988). A group of genes required for pattern formation in the ventral ectoderm of the Drosophila embryo. Genes Dev 2, 1496-1511.[Abstract/Free Full Text]

McCormick, F (1993). How receptors turn Ras on. Nature 363, 15-16.[Medline]

Mlodzik, M., Baker, N. E. and Rubin, G. M (1990). Isolation and expression of scabrous, a gene regulating neurogenesis in Drosophila. Genes Dev 4, 1848-1861.[Abstract/Free Full Text]

Moses, K. and Rubin, G. M (1991). glass encodes a site-specific DNA-binding protein that is regulated in response to positional signals in the developing Drosophila eye. Genes Dev 5, 583-593.[Abstract/Free Full Text]

Perrimon, N (1994). Signaling pathways initiated by receptor protein-tyrosine kinases in Drosophila. Curr. Opin. Cell Biol 6, 260-266.[Medline]

Perrimon, N., Lu, X. Y., Hou, X. S., Hsu, J. C., Melnick, M. B., Chou, T. B. and Perkins, L. A (1995). Dissection of the Torso signal transduction pathway in Drosophila. Mol. Reprod. Dev 42, 515-522.[Medline]

Price, J. V., Clifford, R. J. and Schupbach, T (1989). The maternal ventralizing locus torpedo is allelic to faint little ball , an embryonic lethal, and encodes the Drosophila EGF receptor homolog. Cell 56, 1085-1092.[Medline]

Ready, D. F., Hanson, T. E. and Benzer, S (1976). Development of the Drosophila retina, a neurocrystalline lattice. Dev. Biol 53, 217-240.[Medline]

Rebay, I. and Rubin, G. M (1995). Yan functions as a general inhibitor of differentiation and is negatively regulated by activation of the Ras1/MAPK pathway. Cell 81, 857-866.[Medline]

Reneker, L. W., Silversides, D. W., Patel, K. and Overbeek, P. A (1995). TGFcan act as a chemoatractant to perioptic mesenchymal cells in developing mouse eyes. Development 121, 1669-1680.[Abstract]

Reuter, D., Kuhnlein, R. P., Frommer, G., Barrio, R., Kafatos, F. C., Jackle, H. and Schuh, R (1996). Regulation, function and potential origin of the Drosophila gene spalt adjacent , which encodes a secreted protein expressed in the early embryo. Chromosoma 104, 445-454.[Medline]

Robinow, S. and White, K (1991). Characterization and spatial distribution of the ELAV protein during Drosophilamelanogaster development. J. Neurobiol 22, 443-461.[Medline]

Rutledge, B. J., Zhang, K., Bier, E., Jan, Y. N. and Perrimon, N (1992). The Drosophila spitz gene encodes a putative EGF-like growth factor involved in dorsal-ventral axis formation and neurogenesis. Genes Dev 6, 1503-1517.[Abstract/Free Full Text]

Schlessinger, J. and Bar-Sagi, D (1994). Activation of Ras and other signaling pathways by receptor tyrosine kinases. Cold Spring Harbor Symp. Quant. Biol 59, 173-179.[Medline]

Schweitzer, R., Howes, R., Smith, R., Shilo, B.-Z. and Freeman, M (1995). Inhibition of Drosophila EGF receptor activation by the secreted protein Argos. Nature 376, 699-702.[Medline]

Schweitzer, R., Shaharabany, M., Seger, R. and Shilo, B.-Z (1995). Secreted Spitz triggers the DER signaling pathway and is a limiting component in embryonic ventral ectoderm determination. Genes Dev 9, 1518-1529.[Abstract/Free Full Text]

Simon, M. A., Bowtell, D. D. L., Dodson, G. S., Laverty, T. R. and Rubin, G. M (1991). Ras1 and a putative guanine nucleotide exchange factor perform crucial steps in signaling by the sevenless protein tyrosine kinase. Cell 67, 701-716.[Medline]

Smith, D. B. and Johnson, K. S (1988). Single-step purification of polypeptides expressed in Escherichia coli as fusions with glutathione S-transferase. Gene 67, 31-40.[Medline]

Sturtevant, M. A. and Bier, E (1995). Analysis of the genetic hierarchy guiding wing vein development in Drosophila. Development 121, 785-801.[Abstract]

Sturtevant, M. A., Roark, M. and Bier, E (1993). The Drosophila rhomboid gene mediates the localized formation of wing veins and interacts genetically with components of the EGF-R signaling pathway. Genes Dev 7, 961-973.[Abstract/Free Full Text]

Sturtevant, M. A., Roark, M., O'Neill, J. W., Biehs, B., Colley, N. and Bier, E (1996). The Drosophila rhomboid protein is concentrated in patches at the apical cell surface. Dev. Biol 174, 298-309.[Medline]

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]

Thomas, B. J., Gunning, D. A., Cho, J. and Zipursky, S. L (1994). Cell cycle progression in the developing Drosophila eye: roughex encodes a novel protein required for the establishment of G1. Cell 77, 1003-1014.[Medline]

Tio, M., Ma, C. and Moses, K (1994). spitz , a Drosophila homolog of transforming growth factor-, is required in the founding photoreceptor cells of the compound eye facets. Mech. Dev 48, 13-23.[Medline]

Tomlinson, A (1985). The cellular dynamics of pattern formation in the eye of Drosophila. J. Embryol. exp. Morph 89, 313-331.[Medline]

Tomlinson, A., Bowtell, D. D. L., Hafen, E. and Rubin, G. M (1987). Localization of the sevenless protein, a putative receptor for positional information, in the eye imaginal disc of Drosophila. Cell 51, 143-150.[Medline]

Tomlinson, A. and Ready, D. F (1987). Neuronal differentiation in the Drosophila ommatidium. Dev. Biol 120, 366-376.[Medline]

Walsh, C. A (1996). Neural development: Identical twins separated at birth. Curr. Biol 6, 26-28.[Medline]

Wiley, L. M., Adamson, E. D. and Tsark, E. C (1995). Epidermal growth factor receptor function in early mammalian development. BioEssays 17, 839-846.[Medline]

Wolff, T. and Ready, D. F (1991). The beginning of pattern formation in the Drosophila compound eye: the morphogenetic furrow and the second mitotic wave. Development 113, 841-850.[Abstract]

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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