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Andres, V., Nadal-Ginard, B. and Mahdavi, V (1992). Clox , a mammalian homeobox gene related to Drosophila cut , encodes DNA-binding regulatory proteins differentially expressed during development. Development 116, 321-334.[Medline]

Artavanis-Tsakonas, S. and Simpson, P (1991). Choosing a cell fate: a view from the Notch locus. Trends Genet 7, 403-408.[Medline]

Bier, E., Vaessin, H., Sheperd, S., Lee, K., McCall, K., Barbel, S., Ackerman, L., Carretto, R., Uemura, T., Grell, E., Jan, L. Y. and Jan Y. N (1989). Searching for pattern and mutation in the Drosophila genome with a P- lacZ vector. Genes Dev 3, 1273-1287.[Abstract/Free Full Text]

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]

Blochlinger, K., Bodmer, R., Jack, J., Jan, L. Y. and Jan, Y. N (1988). Primary structure and expression of a product from cut , a locus involved in specifying sensory organ identity in Drosophila. Nature 333, 629-635.[Medline]

Blochlinger, K., Bodmer, R., Jan, L. Y. and Jan, Y. N (1990). Patterns of expression of cut , a protein required for external sensory organ development in wild-type and cut mutant Drosophila embryos. Genes Dev 4, 1322-1331.[Abstract/Free Full Text]

Bodmer, R., Barbel, S., Sheperd, S., Jack, J. W., Jan, L. Y. and Jan, Y. N (1987). Transformation of sensory organs by mutations of the cut locus of D. melanogaster. Cell 51, 293-307.[Medline]

Bodmer, R., Carretto, R. and Jan, Y. N (1989). Neurogenesis of the Peripheral nervous system in Drosophila embryos: DNA replication patterns and cell lineages. Neuron 3, 21-32.[Medline]

Cabrera, C. V., Martinez-Arias, A. and Bate, M (1987). The expression of three members of the achaete-scute complex correlates with neuroblast segregation. Cell 50, 425-433.[Medline]

Campuzano, S. and Modellel, J (1992). Patterning of the Drosophila nervous system: the achaete-scute gene complex. Trends Genet 8, 202-208.[Medline]

Dambly-Chaudiere, C. and Ghysen, A (1987). Independent sub-patterns of sense organs require independent genes of the achaete-scute complex in Drosophila larvae. Genes Dev 1, 297-306.[Abstract/Free Full Text]

Dambly-Chaudiere, C., Jamet, E., Burri, M., Bopp, D., Basler, K., Hafen, E., Dumont, N., Spielman, P., Ghysen, A. and Noll, M (1992). The paired box gene pox neuro : a determinant of poly-innervated sense organs in Drosophila. Cell 69, 159-172.[Medline]

Dufort, D. and Nepveu, A (1994). The Human Cut homeodomain protein represses transcription from the c- myc promoter. Molecular and Cellular Biology 14, 4251-4257.[Abstract/Free Full Text]

Ghysen, A. and O'Kane, C (1989). Neural enhancer-like elements as specific cell markers in Drosophila. Development 105, 35-52.[Abstract]

Ghysen, A. and Dambly-Chaudiere, C (1993). Cell interactions and gene interactions in peripheral neurogenesis. BioEssays 15, 293-298.[Medline]

Goriely, A., Dumont, N., Dambly-Chaudiere, C. and Ghysen, A (1991). The determination of sense organs in Drosophila : effect of the neurogenic mutations in the embryo. Development 113, 1395-1404.[Abstract]

Hartenstein, V (1988). Development of Drosophila larval sensory organs: spatiotemporal pattern of sensory neurons, peripheral axonal pathways and sensilla differentiation. Development 102, 869-886.[Free Full Text]

Hartenstein, V. and Posakony, J. W (1989). Development of adult sensilla on the wing and notum of Drosophilamelanogaster. Development 107, 389-405.[Abstract]

Jarman, A. P., Grau, Y., Jan L. Y. and Jan, Y. N (1993). atonal is a proneural gene that directs chordotonal organ formation in the Drosophila peripheral nervous system. Cell 73, 1307-1321.[Medline]

Lawrence, P. A (1966). Development and determination of hairs and bristles in the milkweed bug, Oncopeltus fasciatus (Lygaeidae, Hemiptera). J. Cell Sci 1, 475-498.[Abstract/Free Full Text]

Matthews, K. A., Miller, D. F. B and Kaufman, T. C (1990). Functional implications of the unusual spatial distribution of a minor alpha-tubulin isotype in Drosophila : a common thread among chordotonal ligaments, developing muscle, and testis cyst cells. Dev. Biol 137, 171-183.[Medline]

Merritt, D. J., Hawken, A. and Whitington, P. M (1993). The role of the cut gene in the specification of central projections of sensory axons in Drosophila. Neuron 10, 741-752.[Medline]

Merritt, D. J. and Whitington, P. M (1995). Central projection of sensory neurons in the Drosophila embryo correlate with sensory modality, soma position and proneural gene function. J. Neurosci 15, 1755-67.[Abstract]

Neufeld, E. J., Skalnik, D. G., Lievens, P. M-J. and Orkin, S. H (1992). Human CCAAT displacement protein is homologous to the Drosophila homeoprotein, cut. Nature Genetics 1, 50-55.[Medline]

Rhyu, M. S., Jan, L. Y. and Jan, Y. N (1994). Asymmetric distribution of the numb protein in the sensory organ precursor cell confers distinct fates to the daughter cells. Cell 76, 477-491.[Medline]

Romani, S., Campuzano, S., Macagno, E. R. and Modolell, J (1989). Expression of achaete and scute genes in Drosophila imaginal discs and their function in sensory organ development. Genes Dev 3, 997-1007.[Abstract/Free Full Text]

Ruiz-Gomez, M. and Ghysen, A (1993). The expression and role of a proneural gene, achaete , in the development of the larval nervous system of Drosophila. EMBO J 12, 1121-1130.[Medline]

Salzberg, A., D'Evelyn, D., Schulze, K. L., Lee, J.-K., Strumpf, D., Tsai, L. and Bellen, H. J (1994). Mutations affecting the pattern of the PNS in Drosophila reveal novel aspects of neuronal development. Neuron 13, 269-287.[Medline]

Skalnik, D. G., Strauss, E. C. and Orkin, S. H (1991). CCAAT displacement protein as a repressor of the myelomonocytic-specific gp91-phox gene promoter. J. Biol. Chem 266, 16736-16744.[Abstract/Free Full Text]

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

Uemura, T., Shepard, S., Ackerman, L., Jan, L. Y. and Jan, Y. N (1989). numb , a gene required in the determination of cell fate during sensory organ formation in Drosophila embryos. Cell 58, 349-360.[Medline]

Valarche, I., Tissier-Seta, J.-P., Hirsch, M.-R., Martinez, S., Goridis, C. and Brunet, J.-F (1993). The mouse homeodomain protein Phox2 regulates Ncam promoter activity in concert with Cux/CDP and is a putative determinant of neurotransmitter phenotype. Development 119, 881-896.[Abstract]

Wigglesworth, V. B (1953). The origin of sensory neurones in an insect, Rhodius prolixus (Hemiptera). Quart. J. Microsc. Sci 94, 93-112.

Zipursky, S. L., Venkatesh, T. R., Teplow, D. B. and Benzer, S (1984). Neuronal development in the Drosophila retina: monoclonal antibodies as molecular probes. Cell 36, 15-26.[Medline]




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