A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Allele Dmel\vnScer\UAS.cYa

General Information
SymbolDmel\vnScer\UAS.cYaSpeciesD. melanogaster
NameSaccharomyces cerevisiae UAS construct a of YarnitzkyFlyBase IDFBal0065638
Feature typealleleAssociated geneDmel\vn
Allele class
Mutagenin vitro construct - regulatory fusion
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Description
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FB2013_03
FB2013_02
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Allele class
Mutagen
Mutations Mapped to the Genome
Type
Location
Additional Notes
References
Associated Sequence Data
DDBJ /
EMBL /
GenBank
DNA sequence
Protein sequence
Name
 
UniProtKB/Swiss-Prot
UniProtKB/TrEMBL
Progenitor genotype
Nature of the lesion
Statement
Reference
Construct: 3.4kb EcoRI fragment of vn cDNA is cloned into the pUAST vector.
Carried in construct
Cytology
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Statement
Reference
Stage 16 vnScer\UAS.cYa; Scer\GAL4repo embryos have increased numbers of lch5 ligament attachment cells.
Embryos expressing vnScer\UAS.cYa under the control of Scer\GAL4twi.PG or Scer\GAL4Kr.PM have supernumerary eve- and Kr-positive muscle precursor clusters. Embryos expressing vnScer\UAS.cYa under the control of Scer\GAL469B have supernumerary eve-positive muscle precursor clusters.
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Statement
Reference
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Statement
Reference
vnScer\UAS.cYa/Scer\GAL469B is a suppressor of phenotype of mys11
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Reference
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Statement
Reference
Expression of vnScer\UAS.cYa in the tendon cells under the control of Scer\GAL469B can rescue the phenotype of mys11 embryos (that lack both maternal and zygotic mys function), while expression of vnScer\UAS.cYa in the mesoderm under the control of both Scer\GAL4twi.PG and Scer\GAL4how-24B cannot.
The production of extra eve-positive muscle precursor clusters seen in embryos expressing vnScer\UAS.cYa under the control of Scer\GAL469B is not altered in a spi3 or rhounspecified background.
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hide Synonyms & Secondary IDs ( 3 )
Reported As
Symbol Synonym
vnScer\UAS.cYa
 
vnUAS.cYa
 
Name Synonym
Saccharomyces cerevisiae UAS construct a of Yarnitzky
Secondary FlyBase IDs
hide References ( 6 )
Research paper
Inbal et al., 2004, Dev. Cell 7(2): 241--250
Recruitment of ectodermal attachment cells via an EGFR-dependent mechanism during the organogenesis of Drosophila proprioceptors. [FBrf0180120]
Martin-Bermudo, 2000, Development 127(12): 2607--2615
Integrins modulate the Egfr signaling pathway to regulate tendon cell differentiation in the Drosophila embryo. [FBrf0128565]
Golembo et al., 1999, Genes Dev. 13(2): 158--162
Vein expression is induced by the EGF receptor pathway to provide a positive feedback loop in patterning the Drosophila embryonic ventral ectoderm. [FBrf0106549]
Nabel-Rosen et al., 1999, Mol. Cell 4(4): 573--584
The balance between two isoforms of the Drosophila RNA-binding protein how controls tendon cell differentiation. [FBrf0111987]
Yarnitzky et al., 1998, Mech. Dev. 79(1,2): 73--82
An interplay between two EGF-receptor ligands, Vein and Spitz, is required for the formation of a subset of muscle precursors in Drosophila. [FBrf0106043]
Yarnitzky et al., 1997, Genes Dev. 11(20): 2691--2700
The Drosophila neuregulin homolog vein mediates inductive interactions between myotubes and their epidermal attachment cells. [FBrf0098912]