A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Recombinant construct P{UAS-TeTxLC.(-)Q}

General Information
Symbol P{UAS-TeTxLC.(-)Q} FlyBase ID FBtp0001265
Feature type transgenic_transposon
Size Expression data
Associated insertions 3 available
Molecular map
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Description
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FB2013_03
FB2013_02
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hide Description & Uses
Species synthetic construct
Location-dependent
role
Description
CV term
Qualifiers & info
Reference
transposon
P-element
Uses
CV term
Qualifiers & info
Reference
binary system (targeted)
Ctet\TeTxLC
characterization
Cloning Sites
Location
Restriction sites
Reference
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Sequence (FB)
Associated Sequence Data
DDBJ /
EMBL /
GenBank
DNA sequence
Extent
 
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Total Size
Left end
Right end
Segments
Number
Orientation
Symbol
Reference
hide Features
CV term
Qualifiers & info
Reference
binary
component
chimeric
modified
selectable
hide Component Alleles
Allele Ctet\TeTxLCIMPTNT-Q.Scer\UAS
Reference(s) (Sweeney et al., 1995, Keller et al., 2002, Luan et al., 2006, Baier et al., 2002, Heimbeck et al., 1999, Hiesinger et al., 1999, Rosenzweig et al., 2005, Lieber et al., 2011, Hassan et al., 2005)
Molecular data
Construct: Mutated Ctet\TeTxLC gene fragment (amino acid replacement: E234Q) is expressed under the control of the Scer\UAS Scer\GAL4 binding sites.
Phenotypic class
Phenotype manifest in
Other information
Allele w+mC
Reference(s) (Sweeney et al., 1995)
Molecular data
Minigene of the white cDNA.
4.15kb SpeI fragment of the w gene that carries a deletion of a large part of the first intron and the regulatory region is reduced to 300bp preceding the transcription start site.
Construct: A 'mini-white' gene constructed by deletion of the HindIII-XbaI fragment from the long 5' intron. Carried by the Casper series of vectors.
 
Phenotypic class
Phenotype manifest in
Other information
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Reporter Expression
Additional Information
Statement
Reference
Marker for
Reflects expression of
hide Progenitors & Descendants
progenitor(s)
descendant(s)
hide Comments
report comment: TeTxLC gene is inactive form.
hide Stocks Listed in FlyBase ( 1 )
Bloomington
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Other Crossreferences
Linkouts
hide Synonyms & Secondary IDs
Reported As
Symbol Synonym
IMPTNTQ4A
IMPT-TNT-Q4A
P{UAS-TeTxLC.(-)Q}
UAS.IMPTNT
UAS-IMP-tntQ
UAS-IMP-TNTQ
UAS-IMPTNT-Q
UAS-InactiveTeTxLC
UAS-TNT-Q4-A1
Secondary FlyBase IDs
hide References ( 9 )
Research paper
Lieber et al., 2011, Neuron 69(3): 468--481
DSL-Notch Signaling in the Drosophila Brain in Response to Olfactory Stimulation. [FBrf0212999]
Luan et al., 2006, J. Neurosci. 26(2): 573--584
Functional dissection of a neuronal network required for cuticle tanning and wing expansion in Drosophila. [FBrf0191050]
Hassan et al., 2005, J. Comp. Neurol. 481(3): 266--275
Photic input pathways that mediate the Drosophila larval response to light and circadian rhythmicity are developmentally related but functionally distinct. [FBrf0184105]
Rosenzweig et al., 2005, Genes Dev. 19(4): 419--424
The Drosophila ortholog of vertebrate TRPA1 regulates thermotaxis. [FBrf0183983]
Baier et al., 2002, J. Exp. Biol. 205(9): 1233--1240
Drosophila as a new model organism for the neurobiology of aggression? [FBrf0147123]
Keller et al., 2002, J. Neurobiol. 50(3): 221--233
Targeted expression of tetanus neurotoxin interferes with behavioral responses to sensory input in Drosophila. [FBrf0144966]
Heimbeck et al., 1999, J. Neurosci. 19(15): 6599--6609
Smell and taste perception in Drosophila melanogaster larva: toxin expression studies in chemosensory neurons. [FBrf0109886]
Hiesinger et al., 1999, J. Neurosci. 19(17): 7548--7556
Neuropil pattern formation and regulation of cell adhesion molecules in Drosophila optic lobe development depend on synaptobrevin. [FBrf0109917]
Sweeney et al., 1995, Neuron 14(2): 341--351
Targeted expression of tetanus toxin light chain in Drosophila specifically eliminates synaptic transmission and causes behavioral defects. [FBrf0080431]