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Bossing, T. and Technau, G. M (1994). The fate of the CNS midline progenitors in Drosophila as revealed by a new method for single cell labeling. Development 120, 1895-1906.[Abstract]

Bovolenta, P. and Dodd, J (1990). Guidance of commissural growth cones at the floor plate in the embryonic rat spinal cord. Development 109, 625-639.[Abstract]

Chan, S. S., Zheng, H., Su, M. W., Wilk, R., Killeen, M. T., Hedgecock, E. M. and Culotti, J. G (1996). UNC-40, a C. elegans homolog of DCC (Deleted in Colorectal Cancer), is required in motile cells responding to UNC-6 netrin cues. Cell 87, 187-195.[Medline]

Choi, K.-W. and Benzer, S (1994). Migration of glia along photoreceptor axons in the developing Drosophila eye. Neuron 12, 423-431.[Medline]

Colamarino, S. A. and Tessier-Lavigne, M (1995). The axonalchemoattractant netrin-1 is also a chemorepellent for trochlear motor axons. Cell 81, 621-629.[Medline]

Colavita, A. and Culotti, J. G (1998). Suppressors of ectopic UNC 5 growth cone steering identify eight genes involved in axon guidance in Caenorhabditis elegans. Dev. Biol 194, 72-85.[Medline]

Colavita, A., Krishna, S., Zheng, H., Padgett, R. W. and Culotti, J. G (1998). Pioneer axon guidance by UNC 129, a C. elegans TGF beta. Science 281, 706-709.[Abstract/Free Full Text]

Condron, B. G. and Zinn, K (1994). The grasshopper median neuroblast is a multipotent progenitor cell that generates glia and neurons in distinct temporal phases. J. Neurosci 14, 5766-5777.[Abstract]

Finkelstein, R., Smouse, D., Capaci, T. M., Spradling, A. C. and Perrimon, N (1990). The orthodenticle gene encodes a novel homeodomain protein involved in the development of the Drosophila nervous system and ocellar visual structures. Genes Dev 4, 1516-1527.[Abstract/Free Full Text]

Fishman, R. B. and Hatten, M. E (1993). Multiple receptor systems promote CNS neural migration. J. Neurosci 13, 3485-95.[Abstract]

Giesen, K., Hummel, T., Stollewerk, A., Harrison, S., Travers, A. and Kl\212mbt, C (1997). Glial development in the Drosophila CNS requires concomitant activation of glial and repression of neuronal differentiation genes. Development 124, 2307-2311.[Abstract]

Hamelin, M., Zhou, Y., Su, M. W., Scott, I. M. and Culotti, J. G (1993). Expression of the unc-5 guidance receptor in the touch neurons of C.elegans steers their axons dorsally. Nature 364, 327-330.[Medline]

Harris, R., Sabatelli, L. M. and Seeger, M. A (1996). Guidance cues at the Drosophila midline: Identification and characterization of two Drosophila netrin/unc6 homologs. Neuron 17, 217-228.[Medline]

Hedgecock, E. M., Culotti, J. G. and Hall, D. H (1990). The unc-5, unc-6 and unc-40 genes guide circumferential migrations of pioneer axons and mesodermal cells on the epidermis in C. elegans. Neuron 4, 61-85.[Medline]

Hidalgo, A. and Brand, A. H (1997). Targeted neuronal ablation: the role of pioneer neurons in guidance and fasciculation in the CNS of Drosophila. Development 124, 3253-3262.[Abstract]

Ishii, N., Wadsworth, W. G., Stern, B. D., Culotti, J. G. and Hedgecock, E. M (1992). UNC-6, a laminin related protein, guides cell and pioneer axon migrations in C. elegans. Neuron 9, 873-881.[Medline]

Jacobs, J. R. and Goodman, C. S (1989). Embryonic development of axon pathways in the Drosophila CNS: I. A glial scaffold appears before the first growth cones. J. Neurosci 9, 2402-2411.[Abstract]

Kennedy, T. E., Serafini, T., de la Torre, J. R. and Tessier-Lavigne, M (1994). Netrins are diffusible chemotropic factors for commissural axons in the embryonic spinal cord. Cell 78, 425-35.[Medline]

Kidd, T., Brose, K., Mitchell, K. J., Fetter, R. D., Tessier-Lavigne, M., Goodman, C. S. and Tear, G (1998). Roundabout controls axon crossing of the CNS midline and defines a novel subfamily of evolutionarily conserved guidance receptors. Cell 92, 205-215.[Medline]

Kidd, T., Russell, C., Goodman, C. S. and Tear, G (1998). Dosage sensitive and complementary functions of roundabout and commissureless control axon crossing of the CNS midline. Neuron 20, 25-33.[Medline]

Klaes, A., Menne, T., Stollewerk, A., Scholz, H. and Kl\212mbt, C (1994). The ETS transcription factors encoded by the Drosophila gene pointed direct glial cell differentiation in the embryonic CNS. Cell 78, 149-160.[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/Free Full Text]

Kl\212mbt, C., Jacobs, R. J. and Goodman, C. S (1991). The midline of theDrosophila CNS: Model and genetic analysis of cell lineage, cell migration, development of commissural axon pathways. Cell 64, 801-815.[Medline]

Kolodziej, P. A., Jan, L. Y. and Jan, Y. N (1995). Mutations that affect the length, fasciculation, or ventral orientation of specific sensory axons in the Drosophila embryo. Neuron 15, 273-86.[Medline]

Kolodziej, P. A., Timpe, L. C., Mitchell, K. J., Fried, S. R., Goodman, C. S., Jan, L. Y. and Jan, Y. N (1996). frazzled encodes a Drosophila member of the DCC immunoglobulin subfamily and is required for CNS and motor axon guidance. Cell 87, 197-204.[Medline]

Leonardo, E. D., Hinck, L., Masu, M., Keino-Masu, K., Ackerman, S. L. and Tessier-Lavigne, M (1997). Vertebrate homologues of C. elegans UNC 5 are candidate netrin receptors. Nature 386, 833-8.[Medline]

Lin, D. M., Auld, V. J. and Goodman, C. S (1995). Targeted neuronal cell ablation in the Drosophila embryo: pathfinding by follower growth cones in the absence of pioneers. Neuron 14, 707-15.[Medline]

Ming, G. L., Song, H. J., Berninger, B., Holt, C. E., Tessier-Lavigne, M. and Poo, M. M (1997). cAMP dependent growth cone guidance by netrin 1. Neuron 19, 1225-1235.[Medline]

Mitchell, K. J., Doyle, J. L., Serafini, T., Kennedy, T. E., Tessier-Lavigne, M., Goodman, C. S. and Dickson, B. J (1996). Genetic analysis of Netrin genes in Drosophila: Netrins guide CNS commissural axons and peripheral motor axons. Neuron 17, 203-215.[Medline]

Orioli, D., Henkemeyer, M., Lemke, G., Klein, R. and Pawson, T (1996). Sek4 and Nuk receptors cooperate in guidance of commissural axons and in palate formation. EMBO J 15, 6035-6049.[Medline]

Raz, E. and Shilo, B.-Z (1992). Dissection of the faint little ball (flb) phenotype: Determination of the development of the Drosophila central nervous system by early interactions in the ectoderm. Development 114, 113-123.[Abstract]

Scholz, H., Sadlowski, E., Klaes, A. and Kl\212mbt, C (1997). Control of midline glia development in the embryonic Drosophila CNS. Mech. Dev 64, 137-151.[Medline]

Seeger, M., Tear, G., Ferres-Marca, D. and Goodman, C. S (1993). Mutations affecting growth cone guidance in Drosophila: Genes necessary for guidance towards or away from the midline. Neuron 10, 409-426.[Medline]

Serafini, T., Colamarino, S. A., Leonardo, E. D., Wang, H., Beddington, R., Skarnes, W. C. and Tessier-Lavigne, M (1996). Netrin 1 is required for commissural axon guidance in the developing vertebrate nervous system. Cell 87, 1001-14.[Medline]

Serafini, T., Kennedy, T. E., Galko, M. J., Mirzayan, C., Jessell, T. M. and Tessier-Lavigne, M (1994). The netrins define a family of axon outgrowth promoting proteins homologous to C. elegans UNC 6. Cell 78, 409-424.[Medline]

Stemerdink, C. and Jacobs, J. R (1997). Argos and Spitz group genes function to regulate midline glial cell number in Drosophila embryos. Development 124, 3787-96.[Abstract]

Stoeckli, E. T., Sonderegger, P., Pollerberg, G. E. and Landmesser, L. T (1997). Interference with axonin 1 and NrCAM interactions unmasks a floor plate activity inhibitory for commissural axons. Neuron 18, 209-21.[Medline]

Tear, G., Harris, R., Sutaria, S., Kilomanski, K., Goodman, C. S. and Seeger, M. A (1996). commissureless controls growth cone guidance across the CNS midline in Drosophila and encodes a novel membrane protein. Neuron 16, 501-514.[Medline]

Tessier-Lavigne, M. and Goodman, C. S (1996). The molecular biology of axon guidance. Science 274, 1123-33.[Abstract/Free Full Text]

Zallen, J. A., Yi, B. A. and Bargmann, C. I (1998). The conserved immunoglobulin superfamily member SAX 3/Robo directs multiple aspects of axon guidance in C. elegans. Cell 92, 217-227.[Medline]

Zhou, L., Hashimi, H., Schwarz, L. M. and Nambu, J. R (1995). Programmed cell death in the Drosophila central nervous midline. Curr. Biol 5, 784-790.[Medline]


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