Literature DB >> 8083728

Spatial and temporal expression patterns of two sodium channel genes in Drosophila.

C S Hong1, B Ganetzky.   

Abstract

Genetic and molecular studies have identified two different sodium channel genes in Drosophila, para and DSC1. The functional contributions of the para-encoded channel have been inferred from analysis of mutant phenotypes. However, no mutations of DSC1 have been identified, so the in vivo functions of the channel it encodes are not yet known. To learn more about the possible functions of DSC1 in the Drosophila nervous system compared with those of para, we have characterized the expression patterns of these two sodium channel genes at embryonic, larval, pupal, and adult stages by tissue in situ hybridization, para encodes the predominant type of sodium channel and is ubiquitously transcribed throughout the CNS and PNS at all developmental stages. The expression pattern of DSC1 is very different from para during embryonic and larval stages during which there are very few DSC1-expressing cells in either the CNS or PNS. Double-labeling studies suggest that some of these cells are non-neuronal. However, in pupal and adult stages, para and DSC1 have completely overlapping patterns of expression in the CNS and retina. In the pupal and adult, PNS expression of these genes is still distinct because only para transcripts are detected in wing sensory neurons. The strong and widespread expression of DSC1 in the CNS of pupae and adults suggests that the DSC1 channels are likely to provide an important function in neurons during these stages. Since most, if not all, neurons in the pupal and adult CNS express both para and DSC1, these two sodium channel genes probably subserve distinct functions within these cells. Our results provide the background for elucidating the respective in vivo contributions of para and DSC1 to neuronal excitability and for dissecting the regulatory mechanisms that underlie their different patterns of expression.

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Year:  1994        PMID: 8083728      PMCID: PMC6577081     

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  28 in total

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Authors:  Wei Zhou; Inbum Chung; Zhiqi Liu; Alan L Goldin; Ke Dong
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4.  The effects of amyloid peptides on A-type K(+) currents of Drosophila larval cholinergic neurons: modeled actions on firing properties.

Authors:  Jackie F Kidd; David B Sattelle
Journal:  Invert Neurosci       Date:  2006-11-01

5.  The dominant cold-sensitive Out-cold mutants of Drosophila melanogaster have novel missense mutations in the voltage-gated sodium channel gene paralytic.

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Journal:  Genetics       Date:  2008-08-24       Impact factor: 4.562

6.  Identification of mutations in the housefly para-type sodium channel gene associated with knockdown resistance (kdr) to pyrethroid insecticides.

Authors:  M S Williamson; D Martinez-Torres; C A Hick; A L Devonshire
Journal:  Mol Gen Genet       Date:  1996-08-27

7.  The Drosophila erg K+ channel polypeptide is encoded by the seizure locus.

Authors:  S A Titus; J W Warmke; B Ganetzky
Journal:  J Neurosci       Date:  1997-02-01       Impact factor: 6.167

8.  Molecular characterization and functional expression of the DSC1 channel.

Authors:  Tianxiang Zhang; Zhiqi Liu; Weizhong Song; Yuzhe Du; Ke Dong
Journal:  Insect Biochem Mol Biol       Date:  2011-05-07       Impact factor: 4.714

9.  Evolution and divergence of sodium channel genes in vertebrates.

Authors:  G F Lopreato; Y Lu; A Southwell; N S Atkinson; D M Hillis; T P Wilcox; H H Zakon
Journal:  Proc Natl Acad Sci U S A       Date:  2001-06-19       Impact factor: 11.205

10.  Serotonergic modulation of visual neurons in Drosophila melanogaster.

Authors:  Maureen M Sampson; Katherine M Myers Gschweng; Ben J Hardcastle; Shivan L Bonanno; Tyler R Sizemore; Rebecca C Arnold; Fuying Gao; Andrew M Dacks; Mark A Frye; David E Krantz
Journal:  PLoS Genet       Date:  2020-08-31       Impact factor: 5.917

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