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Neurogenic genes and vertebrate neurogenesis
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title
Neurogenic genes and vertebrate neurogenesis
(English)
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main subject
neurogenesis
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inferred from title
author name string
J Lewis
series ordinal
1
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language of work or name
English
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publication date
February 1996
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published in
Current Opinion in Neurobiology
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volume
6
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issue
1
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page(s)
3-10
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cites work
Cell interactions and gene interactions in peripheral neurogenesis
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Falling off the knife edge
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Delta-notch signaling and Drosophila cell fate choice
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Notch signaling
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Proneural clusters of achaete-scute expression and the generation of sensory organs in the Drosophila imaginal wing disc.
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A dual function of the Notch gene in Drosophila sensillum development.
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Lethal of scute, a proneural gene, participates in the specification of muscle progenitors during Drosophila embryogenesis
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The choice of cell fate in the epidermis of Drosophila.
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Reciprocal changes in expression of the receptor lin-12 and its ligand lag-2 prior to commitment in a C. elegans cell fate decision.
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Groucho is required for Drosophila neurogenesis, segmentation, and sex determination and interacts directly with hairy-related bHLH proteins
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Lateral inhibition mediated by the Drosophila neurogenic gene delta is enhanced by proneural proteins.
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A collection of cortical crescents: Asymmetric protein localization in CNS precursor cells
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Asymmetric segregation of Numb and Prospero during cell division
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Asymmetric distribution of numb protein during division of the sensory organ precursor cell confers distinct fates to daughter cells
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Asymmetric segregation of the homeodomain protein Prospero during Drosophila development.
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Signalling downstream of activated mammalian Notch
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Signal transduction by activated mNotch: importance of proteolytic processing and its regulation by the extracellular domain.
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Antineurogenic phenotypes induced by truncated Notch proteins indicate a role in signal transduction and may point to a novel function for Notch in nuclei
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Specific truncations of Drosophila Notch define dominant activated and dominant negative forms of the receptor.
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Intrinsic activity of the Lin-12 and Notch intracellular domains in vivo
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An activated Notch receptor blocks cell-fate commitment in the developing Drosophila eye.
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Control of cell fate in C. elegans by a GLP-1 peptide consisting primarily of ankyrin repeats
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The suppressor of hairless protein participates in notch receptor signaling
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Physical interaction between a novel domain of the receptor Notch and the transcription factor RBP-J kappa/Su(H)
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Xotch, the Xenopus homolog of Drosophila notch
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Primary neurogenesis in Xenopus embryos regulated by a homologue of the Drosophila neurogenic gene Delta
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Expression of a Delta homologue in prospective neurons in the chick
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Developmental signaling. Vertebrate ligands for Notch.
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Jagged: a mammalian ligand that activates Notch1
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A chick homologue of Serrate and its relationship with Notch and Delta homologues during central neurogenesis
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Persistent expression of helix-loop-helix factor HES-1 prevents mammalian neural differentiation in the central nervous system.
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Targeted disruption of mammalian hairy and Enhancer of split homolog-1 (HES-1) leads to up-regulation of neural helix-loop-helix factors, premature neurogenesis, and severe neural tube defects
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Human homologs of a Drosophila Enhancer of split gene product define a novel family of nuclear proteins
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TLE expression correlates with mouse embryonic segmentation, neurogenesis, and epithelial determination.
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Suppressor of Hairless, the Drosophila homolog of the mouse recombination signal-binding protein gene, controls sensory organ cell fates
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Intrinsic and extrinsic factors regulating vertebrate neurogenesis
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Early neurogenesis in Xenopus: the spatio-temporal pattern of proliferation and cell lineages in the embryonic spinal cord
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Mode of cell proliferation in the developing mouse neocortex.
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Xotch inhibits cell differentiation in the Xenopus retina
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Cleavage orientation and the asymmetric inheritance of notchl immunoreactivity in mammalian neurogenesis
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Sequence of C. elegans lag-2 reveals a cell-signalling domain shared with Delta and Serrate of Drosophila.
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Serrate and wingless cooperate to induce vestigial gene expression and wing formation in Drosophila.
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Notch is required for wingless signaling in the epidermis of Drosophila.
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Structure/function studies of lin-12/Notch proteins.
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The novel Notch homologue mouse Notch 3 lacks specific epidermal growth factor-repeats and is expressed in proliferating neuroepithelium
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Notch1 is essential for postimplantation development in mice.
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Facilitation of lin-12-mediated signalling by sel-12, a Caenorhabditis elegans S182 Alzheimer's disease gene
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Identifiers
DOI
10.1016/S0959-4388(96)80002-X
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Fatcat ID
release_lwuegshwefhhhjgxrpbvu4ovim
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PubMed publication ID
8794055
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