CNS midline enhancers of the Drosophila slit and Toll genes
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[1] G. Rubin,et al. Genetic transformation of Drosophila with transposable element vectors. , 1982, Science.
[2] Stephen T. Crews,et al. The Drosophila single-minded gene encodes a helix-loop-helix protein that acts as a master regulator of CNS midline development , 1991, Cell.
[3] L. Fessler,et al. Glutactin, a novel Drosophila basement membrane‐related glycoprotein with sequence similarity to serine esterases. , 1990, The EMBO journal.
[4] M. Levine,et al. The dorsal gradient morphogen regulates stripes of rhomboid expression in the presumptive neuroectoderm of the Drosophila embryo. , 1992, Genes & development.
[5] N. Patel,et al. Drosophila neuroglian: A member of the immunoglobulin superfamily with extensive homology to the vertebrate neural adhesion molecule L1 , 1989, Cell.
[6] V. Foe,et al. Mitotic domains reveal early commitment of cells in Drosophila embryos. , 1989, Development.
[7] Walter J. Gehring,et al. Regulation and function of the Drosophila segmentation gene fushi tarazu , 1987, Cell.
[8] M Hoch,et al. cis‐acting control elements for Krüppel expression in the Drosophila embryo. , 1990, The EMBO journal.
[9] Christian Klämbt,et al. The midline of the drosophila central nervous system: A model for the genetic analysis of cell fate, cell migration, and growth cone guidance , 1991, Cell.
[10] K. Anderson,et al. Plasma membrane localization of the Toll protein in the syncytial Drosophila embryo: importance of transmembrane signaling for dorsal-ventral pattern formation. , 1991, Development.
[11] G. Rubin,et al. Molecular analysis of no-on-transient A, a gene required for normal vision in drosophila , 1990, Neuron.
[12] W. A. Johnson,et al. Binding of a Drosophila POU-domain protein to a sequence element regulating gene expression in specific dopaminergic neurons , 1990, Nature.
[13] G. Rubin,et al. Analysis of P transposable element functions in drosophila , 1984, Cell.
[14] C. Goodman,et al. Connectin: A homophilic cell adhesion molecule expressed on a subset of muscles and the motoneurons that innervate them in Drosophila , 1992, Cell.
[15] N. Perrimon,et al. The orthodenticle gene encodes a novel homeo domain protein involved in the development of the Drosophila nervous system and ocellar visual structures. , 1990, Genes & development.
[16] T. Uemura,et al. Searching for pattern and mutation in the Drosophila genome with a P-lacZ vector. , 1989, Genes & development.
[17] Stephen T. Crews,et al. The single-minded gene of Drosophila is required for the expression of genes important for the development of CNS midline cells , 1990, Cell.
[18] S. Crews,et al. Drosophila single-minded gene and the molecular genetics of CNS midline development. , 1992, The Journal of experimental zoology.
[19] C. Goodman,et al. Drosophila laminin: sequence of B2 subunit and expression of all three subunits during embryogenesis , 1989, The Journal of cell biology.
[20] J. Rothberg,et al. slit: An EGF-homologous locus of D. melanogaster involved in the development of the embryonic central nervous system , 1988, Cell.
[21] K. Anderson,et al. Zygotic expression and activity of the Drosophila Toll gene, a gene required maternally for embryonic dorsal-ventral pattern formation. , 1988, Genetics.
[22] C. Thummel,et al. Vectors for Drosophila P-element-mediated transformation and tissue culture transfection. , 1988, Gene.
[23] Y. Jan,et al. Patterns of expression of cut, a protein required for external sensory organ development in wild-type and cut mutant Drosophila embryos. , 1990, Genes & development.
[24] Stephen T. Crews,et al. Molecular genetics of the single-minded locus: A gene involved in the development of the Drosophila nervous system , 1988, Cell.
[25] J. Rothberg,et al. slit: an extracellular protein necessary for development of midline glia and commissural axon pathways contains both EGF and LRR domains. , 1990, Genes & development.