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Temporal and spatial expression of Drosophila DLGS97 during neural development

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2008-07
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Albornoz, Valeria
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Temporal and spatial expression of Drosophila DLGS97 during neural development
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Author
  • Albornoz, Valeria;
  • Mendoza-Topaz, Carolina;
  • Oliva, Carlos;
  • Tello, Judith;
  • Olguín Aguilera, Patricio;
  • Sierralta Jara, Jimena;
Abstract
The products of the Drosophila discs-large (dlg) gene are members of the MAGUK family of proteins, a group of proteins involved in localization, transport and recycling Of receptors and channels in cell junctions, including the synapse. In vertebrates, four genes with multiple splice variants homologous to dlg are described. dlg originates two main proteins, DLGA, similar to the vertebrate neuronal protein PSD95, and DLGS97, similar to the vertebrate neuronal and epithelial protein SAP97. DLGA is expressed in epithelia, neural tissue and muscle. DLGS97 is expressed in neural tissue and muscle but not in epithelia. The distinctive difference between them is the presence in DLGS97 of an L27 domain. The differential expression between these variants, makes the study of DLGS97 of key relevance to understand the in vivo role of synaptic MAGUKs in neurons. Here we present the temporal and spatial expression pattern of DLGS97 during embryonic and larval nervous system development, during eye development and in adult brain. Our results show that DLGS97 is expressed zygotically, in neurons in the embryo, larvae and adult, and is absent at all stages in glial cells. During eye development DLGS97 starts to be expressed in photoreceptor cells at early stages of differentiation and localizes basal to the basolteral junctions. In the brain, DLGS97 is expressed in the mushroom bodies and optic lobes at larval and adult stages; and in the antennal lobe in the adult stage. In addition we show that both, dlgS97 and dlgA transcripts express during development multiple splice variants with differences in the use of exons in two sites.
Identifier
URI: https://repositorio.uchile.cl/handle/2250/128081
DOI: 10.1016/j.gep.2008.04.001
ISSN: 1567-133X
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GENE EXPRESSION PATTERNS Volume: 8 Issue: 6 Pages: 443-451 Published: JUL 2008
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