Genetic mechanisms of early neurogenesis in Drosophila melanogaster
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[1] A. Garcı́a-Bellido. Genetic control of wing disc development in Drosophila. , 2008, Ciba Foundation symposium.
[2] J. Campos-Ortega,et al. Genomic regions regulating early embryonic expression of the Drosophila neurogenic gene Delta , 1994, Mechanisms of Development.
[3] J. Campos-Ortega,et al. Neuroectodermal transcription of the Drosophila neurogenic genes E(spl) and HLH-m5 is regulated by proneural genes. , 1994, Development.
[4] J. Campos-Ortega,et al. The basic-helix-loop-helix domain of Drosophila lethal of scute protein is sufficient for proneural function and activates neurogenic genes , 1994, Cell.
[5] G. Struhl,et al. Intrinsic activity of the lin-12 and Notch intracellular domains in vivo , 1993, Cell.
[6] Y. Jan,et al. Cell interactions and gene interactions in peripheral neurogenesis. , 1993, Genes & development.
[7] S. Campuzano,et al. asense, a member of the Drosophila achaete‐scute complex, is a proneural and neural differentiation gene. , 1993, The EMBO journal.
[8] A. Ghysen,et al. The expression and role of a proneural gene, achaete, in the development of the larval nervous system of Drosophila. , 1993, The EMBO journal.
[9] P. Simpson,et al. Altered epidermal growth factor-like sequences provide evidence for a role of Notch as a receptor in cell fate decisions. , 1993, Development.
[10] R. Fehon,et al. Implications of dynamic patterns of Delta and Notch expression for cellular interactions during Drosophila development. , 1993, Development.
[11] P. A. Powell,et al. Spatial regulation of proneural gene activity: auto- and cross-activation of achaete is antagonized by extramacrochaetae. , 1992, Genes & development.
[12] S. Carroll,et al. Gene regulation in two dimensions: the proneural achaete and scute genes are controlled by combinations of axis-patterning genes through a common intergenic control region. , 1992, Genes & development.
[13] M. W. Young,et al. Single amino acid substitutions in EGF-like elements of notch and delta modify drosophila development and affect cell adhesion in vitro , 1992, Neuron.
[14] J. Campos-Ortega,et al. The Enhancer of split complex and adjacent genes in the 96F region of Drosophila melanogaster are required for segregation of neural and epidermal progenitor cells. , 1992, Genetics.
[15] G. Technau,et al. Primary culture of single ectodermal precursors of Drosophila reveals a dorsoventral prepattern of intrinsic neurogenic and epidermogenic capabilities at the early gastrula stage. , 1992, Development.
[16] J. Campos-Ortega,et al. Seven genes of the Enhancer of split complex of Drosophila melanogaster encode helix-loop-helix proteins. , 1992, Genetics.
[17] J. Modolell,et al. The extramacrochaetae gene provides information for sensory organ patterning. , 1992, The EMBO journal.
[18] E. Knust,et al. Enhancer of splitD, a dominant mutation of Drosophila, and its use in the study of functional domains of a helix-loop-helix protein. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[19] S. Carroll,et al. Regulation of proneural gene expression and cell fate during neuroblast segregation in the Drosophila embryo. , 1992, Development.
[20] A. Ghysen,et al. The determination of sense organs in Drosophila: effect of the neurogenic mutations in the embryo. , 1991, Development.
[21] R. J. Fleming,et al. Specific EGF repeats of Notch mediate interactions with Delta and serrate: Implications for notch as a multifunctional receptor , 1991, Cell.
[22] F. Jiménez,et al. Distribution and function of the lethal of scute gene product during early neurogenesis in Drosophila. , 1991, Development.
[23] J. Modolell,et al. Proneural clusters of achaete-scute expression and the generation of sensory organs in the Drosophila imaginal wing disc. , 1991, Genes & development.
[24] S. Carroll,et al. Regulation of achaete-scute gene expression and sensory organ pattern formation in the Drosophila wing. , 1991, Genes & development.
[25] S. Artavanis-Tsakonas,et al. Complex cellular and subcellular regulation of notch expression during embryonic and imaginal development of Drosophila: implications for notch function , 1991, The Journal of cell biology.
[26] P. Simpson,et al. The choice of cell fate in the epidermis of Drosophila , 1991, Cell.
[27] 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.
[28] A. Garcı́a-Bellido,et al. Cell-autonomous role of Notch, an epidermal growth factor homologue, in sensory organ differentiation in Drosophila. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[29] Y. Jan,et al. Genes required for specifying cell fates in Drosophila embryonic sensory nervous system , 1990, Trends in Neurosciences.
[30] J. Campos-Ortega,et al. The pattern of transcription of the neurogenic gene Delta of Drosophila melanogaster. , 1990, Development.
[31] J. Modolell,et al. Competence to develop sensory organs is temporally and spatially regulated in Drosophila epidermal primordia. , 1990, The EMBO journal.
[32] D. Smoller,et al. The Drosophila neurogenic locus mastermind encodes a nuclear protein unusually rich in amino acid homopolymers. , 1990, Genes & development.
[33] E. Olson. MyoD family: a paradigm for development? , 1990, Genes & development.
[34] R. Greenspan,et al. The Notch locus of Drosophila is required in epidermal cells for epidermal development. , 1990, Development.
[35] G. Technau,et al. Single cell transplantation reveals interspecific cell communication in Drosophila chimeras. , 1990, Development.
[36] C V Cabrera,et al. Lateral inhibition and cell fate during neurogenesis in Drosophila: the interactions between scute, Notch and Delta. , 1990, Development.
[37] J. Campos-Ortega,et al. Defective neuroblast commitment in mutants of the achaete-scute complex and adjacent genes of D. melanogaster , 1990, Neuron.
[38] R. Greenspan. The Notch gene, adhesion, and developmental fate in the Drosophila embryo. , 1990, The New biologist.
[39] Y. Jan,et al. Similarity of the product of the Drosophila neurogenic gene big brain to transmembrane channel proteins , 1990, Nature.
[40] Tian Xu,et al. Molecular interactions between the protein products of the neurogenic loci Notch and Delta, two EGF-homologous genes in Drosophila , 1990, Cell.
[41] J. Campos-Ortega,et al. Molecular analysis of a cellular decision during embryonic development of Drosophila melanogaster: epidermogenesis or neurogenesis. , 1990, European journal of biochemistry.
[42] Nic Jones,et al. Transcriptional regulation by dimerization: Two sides to an incestuous relationship , 1990, Cell.
[43] J. Posakony,et al. extramacrochaetae, a negative regulator of sensory organ development in Drosophila, defines a new class of helix-loop-helix proteins , 1990, Cell.
[44] J. Modolell,et al. The Drosophila extramacrochaetae locus, an antagonist of proneural genes that, like these genes, encodes a helix-loop-helix protein , 1990, Cell.
[45] H. Weintraub,et al. The MyoD DNA binding domain contains a recognition code for muscle-specific gene activation , 1990, Cell.
[46] R. J. Fleming,et al. The Notch locus and the genetic circuitry involved in early Drosophila neurogenesis. , 1990, Genes & development.
[47] J. Modolell,et al. Molecular analysis of the asense gene, a member of the achaete‐scute complex of Drosophila melanogaster, and its novel role in optic lobe development. , 1989, The EMBO journal.
[48] S. Artavanis-Tsakonas,et al. The notch gene product is a glycoprotein expressed on the cell surface of both epidermal and neuronal precursor cells during Drosophila development , 1989, The Journal of cell biology.
[49] C. Kopczynski,et al. Complex spatio-temporal accumulation of alternative transcripts from the neurogenic gene Delta during Drosophila embryogenesis. , 1989, Development.
[50] P. Simpson,et al. Mutant Drosophila embryos in which all cells adopt a neural fate , 1989, Nature.
[51] C. Wilson,et al. P-element-mediated enhancer detection: a versatile method to study development in Drosophila. , 1989, Genes & development.
[52] T. Uemura,et al. Searching for pattern and mutation in the Drosophila genome with a P-lacZ vector. , 1989, Genes & development.
[53] Y. Jan,et al. Interactions between heterologous helix-loop-helix proteins generate complexes that bind specifically to a common DNA sequence , 1989, Cell.
[54] R. Cagan,et al. Notch is required for successive cell decisions in the developing Drosophila retina. , 1989, Genes & development.
[55] G. Gasic,et al. Structure and distribution of the Notch protein in developing Drosophila. , 1989, Genes & development.
[56] E. Macagno,et al. Expression of achaete and scute genes in Drosophila imaginal discs and their function in sensory organ development. , 1989, Genes & development.
[57] Y. Jan,et al. Neurogenesis of the peripheral nervous system in Drosophila embryos: DNA replication patterns and cell lineages , 1989, Neuron.
[58] S. B. Shepard,et al. A tripartite interaction among alleles of Notch, Delta, and Enhancer of split during imaginal development of Drosophila melanogaster. , 1989, Genetics.
[59] David Baltimore,et al. A new DNA binding and dimerization motif in immunoglobulin enhancer binding, daughterless, MyoD, and myc proteins , 1989, Cell.
[60] C. Klämbt,et al. Closely related transcripts encoded by the neurogenic gene complex enhancer of split of Drosophila melanogaster. , 1989, The EMBO journal.
[61] Y. Jan,et al. daughterless, a Drosophila gene essential for both neurogenesis and sex determination, has sequence similarities to myc and the achaete-scute complex , 1988, Cell.
[62] S. Artavanis-Tsakonas,et al. A deduced gene product from the Drosophila neurogenic locus, Enhancer of split, shows homology to mammalian G-protein β subunit , 1988, Cell.
[63] K. Fechtel,et al. Delta, a Drosophila neurogenic gene, is transcriptionally complex and encodes a protein related to blood coagulation factors and epidermal growth factor of vertebrates. , 1988, Genes & development.
[64] T. Cline,et al. Molecular characterization of daughterless, a Drosophila sex determination gene with multiple roles in development. , 1988, Genes & development.
[65] J. Campos-Ortega. Cellular interactions during early neurogenesis of Drosophila melanogaster , 1988, Trends in Neurosciences.
[66] F. Jiménez. Genetic control of neuronal determination in insects , 1988, Trends in Neurosciences.
[67] C V Cabrera,et al. The achaete‐scute gene complex of Drosophila melanogaster comprises four homologous genes. , 1988, The EMBO journal.
[68] Y. Jan,et al. The maternal sex determination gene daughterless has zygotic activity necessary for the formation of peripheral neurons in Drosophila. , 1988, Genes & development.
[69] A. Ghysen,et al. From DNA to form: the achaete-scute complex. , 1988, Genes & development.
[70] S. Artavanis-Tsakonas. The molecular biology of the Notch locus and the fine tuning of differentiation in Drosophila. , 1988, Trends in genetics : TIG.
[71] U. Dietrich,et al. Functional interactions of neurogenic genes of Drosophila melanogaster. , 1988, Genetics.
[72] C Q Doe,et al. Expression and function of the segmentation gene fushi tarazu during Drosophila neurogenesis. , 1988, Science.
[73] J. Campos-Ortega,et al. Molecular analysis of the neurogenic locus Enhancer of split of Drosophila melanogaster , 1987, The EMBO journal.
[74] W. Gehring,et al. Detection in situ of genomic regulatory elements in Drosophila. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[75] M. W. Young,et al. Mutations altering the structure of epidermal growth factor-like coding sequences at the Drosophila Notch locus , 1987, Cell.
[76] J. Campos-Ortega,et al. The neurogenic gene Delta of Drosophila melanogaster is expressed in neurogenic territories and encodes a putative transmembrane protein with EGF‐like repeats , 1987, The EMBO journal.
[77] S. Artavanis-Tsakonas,et al. The embryonic expression of the Notch locus of Drosophila melanogaster and the implications of point mutations in the extracellular EGF‐like domain of the predicted protein. , 1987, The EMBO journal.
[78] R. Villares,et al. The achaete-scute gene complex of D. melanogaster: Conserved Domains in a subset of genes required for neurogenesis and their homology to myc , 1987, Cell.
[79] M. Bate,et al. The expression of three members of the achaete-scute gene complex correlates with neuroblast segregation in Drosophila , 1987, Cell.
[80] J. Campos-Ortega,et al. Cell autonomy of expression of neurogenic genes of Drosophila melanogaster. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[81] J. Modolell,et al. The achaete‐scute complex is expressed in neurogenic regions of Drosophila embryos , 1987, The EMBO journal.
[82] J. Campos-Ortega,et al. The enhancer of split locus and neurogenesis in Drosophila melanogaster. , 1987, Developmental biology.
[83] B. Byers,et al. Structural comparison of the yeast cell division cycle gene CDC4 and a related pseudogene. , 1987, Journal of molecular biology.
[84] A. Ghysen,et al. Independent subpatterns of sense organs require independent genes of the achaete-scute complex in Drosophila larvae , 1987 .
[85] M. W. Young,et al. Sequence of the notch locus of Drosophila melanogaster: relationship of the encoded protein to mammalian clotting and growth factors , 1986, Molecular and cellular biology.
[86] R. Greenspan,et al. Local function of the notch gene for embryonic ectodermal pathway choice in drosophila , 1986, Cell.
[87] S. Artavanis-Tsakonas,et al. Nucleotide sequence from the neurogenic locus Notch implies a gene product that shares homology with proteins containing EGF-like repeats , 1985, Cell.
[88] C Q Doe,et al. Early events in insect neurogenesis. II. The role of cell interactions and cell lineage in the determination of neuronal precursor cells. , 1985, Developmental biology.
[89] C Q Doe,et al. Early events in insect neurogenesis. I. Development and segmental differences in the pattern of neuronal precursor cells. , 1985, Developmental biology.
[90] M. Bastiani,et al. From grasshopper to Drosophila: a common plan for neuronal development , 1984, Nature.
[91] C. Goodman,et al. Cell determination and regulation during development of neuroblasts and neurones in grasshopper embryo , 1984, Nature.
[92] K. White,et al. Genetic and developmental analysis of the locus vnd in Drosophila melanogaster. , 1983, Genetics.
[93] K. White. Defective neural development in Drosophila melanogaster embryos deficient for the tip of the X chromosome. , 1980, Developmental biology.
[94] J. Campos-Ortega,et al. A region of the Drosophila genome necessary for CNS development , 1979, Nature.
[95] A. Garcı́a-Bellido,et al. Genetic Analysis of the Achaete-Scute System of DROSOPHILA MELANOGASTER. , 1979, Genetics.
[96] A. Garcı́a-Bellido,et al. Developmental Analysis of the Achaete-Scute System of DROSOPHILA MELANOGASTER. , 1978, Genetics.
[97] D. Poulson. Chromosomal Deficiencies and the Embryonic Development of Drosophila Melanogaster. , 1937, Proceedings of the National Academy of Sciences of the United States of America.
[98] J. Campos-Ortega,et al. The distribution of transcripts of neurogenic genes in neurogenic mutants of Drosophila melanogaster. , 1991, Journal of neurogenetics.
[99] J. Campos-Ortega,et al. Genetic analysis of leaf development in cotton , 1991 .
[100] P. Sassone-Corsi,et al. Dimers, leucine zippers and DNA-binding domains. , 1990, Trends in genetics : TIG.
[101] P. Simpson. Notch and the choice of cell fate in Drosophila neuroepithelium. , 1990, Trends in genetics : TIG.
[102] A. Ghysen,et al. Early events in the development of Drosophila peripheral nervous system. , 1990, Journal de physiologie.
[103] A. Ghysen,et al. Neural enhancer-like elements as specific cell markers in Drosophila. , 1989, Development.
[104] A. Ghysen,et al. Genesis of the Drosophila peripheral nervous system. , 1989, Trends in genetics : TIG.
[105] J. Campos-Ortega,et al. Genes in subdivision 1B of the Drosophila melanogaster X-chromosome and their influence on neural development. , 1987, Journal of neurogenetics.
[106] J. Vielmetter,et al. Genetic interactions in early neurogenesis of Drosophila melanogaster. , 1985, Journal of neurogenetics.
[107] J. Campos-Ortega,et al. The expression of neurogenic loci in imaginal epidermal cells of Drosophila melanogaster. , 1984, Journal of neurogenetics.