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Bate, C. M (1976). Embryogenesis of an insect nervous system. I. A map of the thoracic and abdominal neuroblasts in Locusta migratoria. J. Embryol. Exp. Morphol 35, 107-123.[Medline]

Bhat, K. M (1996). The patched signaling pathway mediates repression of gooseberry allowing neuroblast specification by wingless during Drosophila neurogenesis. Development 122, 2911-2922.[Abstract]

Bhat, K. M (1998). Cell-cell signaling during neurogenesis: some answers and many questions. Int. J. Dev. Biol 42, 127-139.[Medline]

Bhat, K. M (1998). frizzled and frizzled 2 play a partially redundant role in the Wingless signaling pathway and have similar functions to Wingless in neurogenesis. Cell 95, 1027-1036.[Medline]

Bhat, K. M., Poole, S, J. and Schedl, P (1995). mitimere and pdm1 genes collaborate during specification of the RP2/sib lineage in Drosophila neurogenesis. Mol. Cell. Biol 15, 4052-4063.[Abstract]

Bhat, K. M. and Schedl, P (1994). The Drosophila mitimere gene a member of the POU family is required for the specification of the RP2/sibling lineage during neurogenesis. Development 120, 1501-1519.

Bossing, T., Udolph, G., Doe, C. Q. and Technau, G. M (1996). The embryonic central nervous system lineages of Drosophila melanogaster . I. Neuroblast lineages derived from the ventral half of the neuroectoderm. Dev. Biol 179, 41-64.[Medline]

Buescher, M., Yeo, S. L., Udolph, G., Zavortink, M., Yang, X., Tear, G. and Chia, W (1998). Binary sibling neuronal cell fate decisions in the Drosophila embryonic central nervous system are nonstochastic and require inscuteable -mediated asymmetry of ganglion mother cells. Genes Dev 12, 1858-1870.[Abstract/Free Full Text]

Cabrera, C. V (1992). The generation of cell diversity during early neurogenesis in Drosophila. Development 115, 893-901.[Medline]

Campos-Ortega, J. A (1996). Numb diverts Notch pathway off the Tramtrack. Neuron 17, 1-4.[Medline]

Chu-LaGraff, Q., Schmid, A., Leidel, J., Bronner, G., Jackle, H. and Doe, C. Q (1995). huckebein specifies aspects of CNS precursor identity required for motoneuron axon path finding. Neuron 15, 1041-1051.[Medline]

Doe, C. Q (1992). Molecular markers for identified neuroblasts and ganglion mother cells in the Drosophila central nervous system. Development 116, 855-863.[Abstract]

Dong, X., Zavitz, K. H., Thomas, B. J., Lin, M., Campbell, S. and Zipursky, S. L (1997). Control of G1in the developing Drosophila eye: rca1 regulates Cyclin A. Genes Dev 11, 94-105.[Abstract/Free Full Text]

Dye, C. A., Lee, J. K., Atkinson, R. C., Brewster, R., Han, P. L. and Bellen, H. J (1998). The Drosophilasanpodo gene controls sibling cell fate and encodes a tropomodulin homolog, an actin/tropomyosin-associated protein. Development 125, 1845-1856.[Abstract]

Edgar, B. A. and Lehner, C. F (1996). Developmental control of cell cycle regulators: A fly's perspective. Science 274, 1646-1652.[Abstract/Free Full Text]

Edgar, B. A. and O'Farrell, P. H (1989). Genetic control of cell division patterns in the Drosophila embryo. Cell 57, 177-187.[Medline]

Edgar, B. A. and O'Farrell, P. H (1990). The three post blastoderm cell cycles of Drosophila embryogenesis are regulated in G2by string. Cell 62, 469-480.[Medline]

Foe, V. E (1989). Mitotic domains reveal early commitment of cells in Drosophila embryos. Development 107, 1-22.[Abstract]

Fujita, S. C., Zipursky, S. L., Benzer, S., Ferrus, 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]

Hartenstein, V. and Posakony, J. W (1990). A dual function of the Notch gene in Drosophila sensillum development. Dev. Biol 142, 13-30.[Medline]

Hirata, J., Nakagoshi, H., Nabeshima, Y. and Matsuzaki, F (1995). Asymmetric segregation of a homeoprotein, Prospero, during cell division in neural and endodermal development. Nature 377, 627-630.[Medline]

Jan, Y. N. and Jan, L. Y (1995). Maggot's hair and bug's eye: Role of cell interactions and intrinsic factors in cell fate specification. Neuron 14, 1-5.[Medline]

Jimenez, J., Alphey, L., Nurse, P. and Glover, D. M (1990). Complementation of fission yeast cdc2tsand cdc25tsmutants identifies two cell cycle genes from Drosophila: a cdc2 homologue and string. EMBO J 9, 3565-.[Medline]

Johnston, L. A (1998). Uncoupling growth from the cell cycle. BioEssays 20, 283-.[Medline]

Knoblich, J. A., Jan, L. Y. and Jan, Y. N (1995). Asymmetric segregation of Numb and Prospero during cell division. Nature 377, 624-627.[Medline]

Kuwada, J. W. and Goodman, C. S (1985). Neuronal determination during embryonic development of the grasshopper nervous system. Dev. Biol 110, 114-126.[Medline]

Lai, Z., Fortini, M. E. and Rubin, G. M (1991). The embryonic expression pattern of zfh1 and zfh2, two Drosophila genes encoding novel zinc-finger homeodomain proteins. Mech. Dev 34, 123-134.[Medline]

Lehner, C.F. and Lane, M. E (1997). Cell cycle regulators in Drosophila: downstream and part of developmental decisions. J. Cell Sci 110, 523-.[Abstract]

Morla, A. O., Draett, G., Beach, D. and Wang, J. Y. J. ( (1989). Reversible tyrosine phosphorylation of cdc2: Dephosphorylation accompanies activation during entry into mitosis. Cell 58, 193-203.[Medline]

Neufeld, T. P., de la Cruz, A. F. A., Johnston, L. A. and Edgar, B (1998). Coordination of Growth and Cell division in the Drosophila wing. Cell 93, 1183-1193.[Medline]

Reed, B. H (1995). Drosophila development pulls the strings of the cell cycle. BioEssays 17, 553-.[Medline]

Schmidt, H., Rickert, C., Bossing, T., Vef, O., Urban, J. and Technau, G (1997). The embryonic nervous system lineages of Drosophila melanogaster. II. Neuroblast lineages derived from the dorsal part of the neuroectoderm. Dev. Biol 189, 186-204.[Medline]

Skeath, J. B. and Doe, C. Q (1998). Sanpodo and Notch act in opposition to Numb to distinguish sibling neuron fate in the Drosophila CNS. Development 125, 1857-1865.[Abstract]

Spana, E. and Doe, C. Q (1995). The prospero transcription factor isasymmetrically localised to the cortex during neuroblast mitosis in Drosophila. Development 121, 3187-3195.[Abstract]

Spana, E. and Doe, C. Q (1996). Numb antagonises Notch signaling to specify sibling neuron cell fate. Neuron 17, 21-26.[Medline]

Spana, E., Kopczynski, C., Goodman, C. S. and Doe, C. Q (1995). Asymmetric localisation of Numb autonomously determines sibling neuron identity in the Drosophila CNS. Development 121, 3489-3494.[Abstract]

Struhl, G. and Adachi, A (1998). Nuclear access and action of Notch in vivo. Cell 93, 649-660.[Medline]

Thomas, J. B., Bastiani, M. J., Bate, M. and Goodman, C. S (1984). From grasshopper to Drosophila: a common plan for neuronal development. Nature 310, 203-207.[Medline]

Whitfield, W. G., Gonzalez, F. C., Maldonado-Codina, G. and Glover, D. M (1990). The A-and B-type cyclins of Drosophila are accumulated and destroyed in temporally distinct events that define separable phases of the G2-M transitions. EMBO J 9, 2563-2572.[Medline]

Zieve, G. W., Turnbull, D., Mullins, J. M. and McIntosh, J. R (1980). Production of large number of mitotic mammalian cells by use of the reversible microtubule inhibitor nocodazole. Exp. Cell Res 126, 397-405.[Medline]




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