A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Gene Mmus\Cd8a

General Information
SymbolMmus\Cd8aSpeciesM. musculus
NameAnnotation symbol
Feature typeengineered_foreign_geneFlyBase IDFBgn0026406
Gene Model StatusNot Applicable Stock availability 83 publicly available
Also Known AsmCD8, CD8, mDC8, Cd8a
Genomic Location
Chromosome (arm)Recombination map
Cytogenetic mapSequence location
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Automatically generated summary

See sections below for more information
This gene is referred to in FlyBase by the symbol Mmus\Cd8a (FBgn0026406). It is a engineered_foreign_gene from Mus musculus. Its molecular function is unknown. The biological processes in which it is involved are not known. 136 alleles are reported. No phenotypic data is available. It has no annotated transcripts. Gene has not been localized to the genome sequence.

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Description
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FB2013_03
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FlyBase Computed Cytological Location
Cytogenetic map
Evidence for location
Experimentally Determined Cytological Location
Cytogenetic map
Notes
References
Experimentally Determined Recombination Data
Location
Left of (cM)
Right of (cM)
Notes
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Comments on Gene Model
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Annotated Transcripts
Name
FlyBase ID
RefSeq ID
Length (nt)
Associated CDS (aa)
Additional Transcript Data & Comments
Reported size (kB)
Comments
External Data
Crossreferences
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Annotated Polypeptides
Name
FlyBase ID
Predicted MW (kDa)
Length (aa)
Theoretical pI
RefSeq ID
GenBank protein
Additional Polypeptide Data & Comments
Reported size (kDa)
Comments
External Data
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DDBJ /
EMBL /
GenBank
DNA sequence
Protein sequence
Name
 
UniProtKB/Swiss-Prot
UniProtKB/TrEMBL
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Type
Symbol & Location
Additional Notes
References
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Additional Descriptive Data
Marker for
Subcellular Localization
CV Term
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Additional Descriptive Data
Marker for
Subcellular Localization (GO Cellular Component)
CV term
References
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Associated Tools
Reference
See Gelbart and Emmert, 2010.10.13 for analysis details and data files for all genes.
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Phenotype manifest in
Allele
hide Classical Alleles ( 1 )
For All Classical Alleles Show

Allele of Mmus\Cd8aClassMutagenStocksKnown lesion
Mmus\Cd8aMz191 Yes
hide Alleles Carried on Transgenic Constructs ( 135 )
For All Alleles Carried on Transgenic Constructs Show

Allele of Mmus\Cd8aClassMutagenStocksKnown lesion
Mmus\Cd8aScer\UAS.T:Avic\GFP38 Yes
Mmus\Cd8aIVS.10xScer\UAS.T:Avic\GFP5 Yes
Mmus\Cd8a13xEcol\lexAop.T:Avic\GFP4 Yes
Mmus\Cd8aIVS.10xScer\UAS.T:Disc\RFP4 Yes
Mmus\Cd8aNcra\QUAS.T:Avic\GFP4 Yes
Mmus\Cd8aScer\FRT.Ncra\QUAS.cPa.T:Avic\GFP3 Yes
Mmus\Cd8aScer\UAS.LG.T:Disc\RFP-mRFP
3 Yes
Mmus\Cd8aET.T:Avic\GFP2 Yes
Mmus\Cd8aFB1.02 Yes
Mmus\Cd8aFB1.12 Yes
Mmus\Cd8aFB2.02 Yes
Mmus\Cd8aScer\FRT.Scer\UAS.cHa.T:Avic\GFP2 Yes
Mmus\Cd8aScer\UAS.T:Disc\RFP-mCherry2 Yes
Mmus\Cd8aT:Avic\GFP2 --
Mmus\Cd8a10xScer\UAS.T:Avic\GFP1 Yes
Mmus\Cd8a16xEcol\lexAop.T:Avic\GFP1 Yes
Mmus\Cd8a26xEcol\lexAop.T:Avic\GFP1 Yes
Mmus\Cd8a8xEcol\lexAop.T:Avic\GFP1 Yes
Mmus\Cd8aIVS.15xScer\UAS.T:Avic\GFP1 Yes
Mmus\Cd8aIVS.1xScer\UAS.T:Avic\GFP1 Yes
Mmus\Cd8aIVS.20xScer\UAS.T:Avic\GFP1 Yes
Mmus\Cd8aIVS.3xScer\UAS.T:Avic\GFP1 Yes
Mmus\Cd8aIVS.40xScer\UAS.T:Avic\GFP1 Yes
Mmus\Cd8aIVS.5xScer\UAS.T:Avic\GFP1 Yes
Mmus\Cd8aScer\UAS.T:Disc\RFP-mRFP1 Yes
Mmus\Cd8a-FRT.Ncra\QUAS.cPa.T:Avic\GFP0 Yes
Mmus\Cd8a2x.Ecol\lexAop.T:Avic\GFP0 Yes
Mmus\Cd8aCG17390.GH.T:Avic\GFP0 Yes
Mmus\Cd8aEcol\lexAop.T:Disc\RFP-tdTomato0 Yes
Mmus\Cd8aelav.T:Avic\GFP0 Yes
Mmus\Cd8afra-2C5.hs.T:Avic\GFP0 Yes
Mmus\Cd8aGMR.T:Hsap\MYC,T:Zzzz\KO-mKO0 Yes
Mmus\Cd8aGr21a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr10a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr13a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr19a.310.acj6.mut.T:Avic\GFP0 Yes
Mmus\Cd8aOr19a.310.onecut.mut.T:Avic\GFP0 Yes
Mmus\Cd8aOr19a.310.T:Avic\GFP0 Yes
Mmus\Cd8aOr19a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr19b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr1a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr22a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr22b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr22c.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr23a.210.T:Avic\GFP0 Yes
Mmus\Cd8aOr23a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr24a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr2a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr30a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr33a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr33b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr33c.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr35a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr42a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr42b.430.T:Avic\GFP0 Yes
Mmus\Cd8aOr42b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr43a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr43b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr45a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr45b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr46aA.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr46aB.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr47a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr47b.330.T:Avic\GFP0 Yes
Mmus\Cd8aOr47b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr49a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr49b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr56a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr59a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr59b.393.T:Avic\GFP0 Yes
Mmus\Cd8aOr59b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr59c.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr63a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr65a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr65b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr65c.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr67a.460.T:Avic\GFP0 Yes
Mmus\Cd8aOr67a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr67b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr67c.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr67d.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr69aA.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr69aB.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr71a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr74a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr7a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr82a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr83a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr83c.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr85a.568.T:Avic\GFP0 Yes
Mmus\Cd8aOr85a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr85b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr85c.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr85d.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr85e.Avic\GFP.T:Hsap\MYC0 --
Mmus\Cd8aOr85f.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr88a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr92a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr94a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr94b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr98a.600.T:Avic\GFP0 Yes
Mmus\Cd8aOr98a.600.Xbp1.mut.T:Avic\GFP0 Yes
Mmus\Cd8aOr98a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr98b.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOr9a.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aOrco.Avic\GFP.T:Hsap\MYC0 Yes
Mmus\Cd8aParp.Scer\UAS.T:Avic\GFP-YFP.Venus
0 --
Mmus\Cd8appk.hs.3x.T:Avic\GFP-EGFP
0 Yes
Mmus\Cd8appk.PCH.T:Avic\GFP0 Yes
Mmus\Cd8appk.PEsICH.T:Avic\GFP0 Yes
Mmus\Cd8appk.PHCH.T:Avic\GFP0 Yes
Mmus\Cd8appk.PHCS.T:Avic\GFP0 Yes
Mmus\Cd8appk.PHCT.T:Avic\GFP0 Yes
Mmus\Cd8appk.PHsICH.T:Avic\GFP0 Yes
Mmus\Cd8appk.PHzICH.T:Avic\GFP0 Yes
Mmus\Cd8appk.PHzICS.T:Avic\GFP0 Yes
Mmus\Cd8appk.PsICH.T:Avic\GFP0 Yes
Mmus\Cd8aR9D11.erm.T:Avic\GFP0 Yes
Mmus\Cd8aRh4.T:Avic\GFP0 Yes
Mmus\Cd8aRh6.T:Avic\GFP0 Yes
Mmus\Cd8aScer\FRT.Scer\UAS.cYa.T:Avic\GFP0 Yes
Mmus\Cd8aScer\FRT.Scer\UAS.T:Avic\GFP0 Yes
Mmus\Cd8aScer\UAS.3x.T:Avic\GFP-EGFP0 Yes
Mmus\Cd8aScer\UAS.cHa.T:Avic\GFP0 Yes
Mmus\Cd8aScer\UAS.cLa0 Yes
Mmus\Cd8aScer\UAS.cYa.T:Avic\GFP0 Yes
Mmus\Cd8aScer\UAS.S.T:Avic\GFP0 Yes
Mmus\Cd8aScer\UAS.Scer\FRT.Scer\FRT-m.71.T:Avic\GFP-EGFP,T:Mmus\pm,T:Avic\GFP-mCitrine,T:Disc\RFP-mCherry,T:Avic\GFP-ECFP.Cer,T:SV5\V50 Yes
Mmus\Cd8aScer\UAS.Scer\FRT.Scer\FRT-m.71.T:Disc\RFP-mCherry,T:Avic\GFP-ECFP.Cer,T:SV5\V50 Yes
Mmus\Cd8aScer\UAS.T:Avic\GFP-EYFP0 --
Mmus\Cd8aScer\UAS.T:Disc\RFP-mRFP.cYa0 Yes
Mmus\Cd8aScer\UAS.T:Hsap\MYC,T:Zzzz\KO-mKO0 Yes
Mmus\Cd8aScer\UAS.x.Scer\FRT-m.71.T:Disc\RFP-mCherry,T:Avic\GFP-ECFP.Cer,T:SV5\V50 Yes
Mmus\Cd8aslou.T:Avic\GFP0 Yes
Mmus\Cd8aαTub84B.T:Avic\GFP-EGFP0 Yes
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Transgenic Constructs
Type of construct
Name
Expression data
Insertions
Type of insertions
Name
Expression data
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Interacts with
Please look at the allele data for full details of the genetic interactions
Mmus\Cd8a allele
Gene
References
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hide OrthoDB Orthologs (0) - based on analysis using Dmel annotation version 5.41
OrthoDB Ortholog Groups
Drosophila inclusive ortholog search
No orthologs identified
Dipteran inclusive ortholog search
No orthologs identified
Insect inclusive ortholog search
No orthologs identified
Arthropod inclusive ortholog search
No orthologs identified
Metazoa inclusive ortholog search
No orthologs identified
Ortholog(s) in Drosophila melanogaster (None identified)
No D. melanogaster orthologies identified
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Gene
OMIM
HGNC
hideAAA Orthologs (0) based on analysis using Dmel annotation version 4.3
No orthologs identified
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Bloomington
hide Genomic Clones ( 0 )
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cDNA Clones, Fully Sequenced
BDGP DGC clones
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Source for database merge of
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hide Tag or Foreign Gene Data
  • Foreign sequence; species == Mus musculus; gene == Cd8a; MGI:88346.
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Sequence Crossreferences
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hide Synonyms & Secondary IDs ( 14 )
Reported As
Symbol Synonym
CD8
(Lee and Luo, 1999, Hyun et al., 2006, Parker, 2006, Bernard et al., 2006, Jones et al., 2006, Betschinger et al., 2006, Jafar-Nejad et al., 2006, Soller et al., 2006, Mahr and Aberle, 2006, Ashraf et al., 2006, Arya et al., 2006, Augustin et al., 2007, Wang and Struhl, 2004, Nicolas and Preat, 2005, Tonning et al., 2005, Mendes et al., 2009, Thum et al., 2011, Srahna et al., 2006, Larsen et al., 2006, Renault et al., 2004, Benton et al., 2007, Millard et al., 2007, Bianco et al., 2007, Jefferis et al., 2007, Zhu et al., 2005, Jones et al., 2007, Honjo and Furukubo-Tokunaga, 2005, Wilson and Laurent, 2005, Roegiers et al., 2005, Benton et al., 2007, Liu et al., 2007, Grieder et al., 2007, Marie et al., 2010, Parrish et al., 2007, Mitri et al., 2009, de Velasco et al., 2007, Bottenberg et al., 2009, Ahmad et al., 2009, Glavic et al., 2009, Parrish et al., 2009, Song and Lu, 2012, Vömel and Wegener, 2008, Iijima-Ando et al., 2009, Iijima et al., 2008, Krashes et al., 2009, Tuxworth et al., 2009, Sakurai et al., 2009, Choi et al., 2009, Takashima et al., 2008, Belenkaya et al., 2008, Rousset et al., 2010, Fradkin et al., 2008, Nässel et al., 2008, Boerner and Duch, 2010, Young and Armstrong, 2010, Sitaraman et al., 2010, Zhang et al., 2012, Assaker et al., 2010, Zeng et al., 2010, Roy et al., 2007, Dow et al., 2003, Pappu et al., 2011, Schoenmann et al., 2010, Acebes et al., 2011, Ai et al., 2010, Kazama et al., 2011, Charlton-Perkins et al., 2011, Stowers, 2011, Hasegawa et al., 2011, Fox and Spradling, 2009, Metzstein and Krasnow, 2006, Yuan et al., 2011, Depetris-Chauvin et al., 2011, Chen and Ganetzky, 2012, Bulgakova et al., 2010, Schulte et al., 2011, Benetka et al., 2008, Moraru et al., 2012, Gault et al., 2012)
mCD8
(Li et al., 2006, Boyle et al., 2006, Lai and Lee, 2006, Sykes et al., 2004, Bai et al., 2000, Kiger et al., 2000, Benton et al., 2006, Fayyazuddin et al., 2006, Long et al., 2006, Pitman et al., 2006, Choi et al., 2006, Bello et al., 2006, Shang et al., 2007, McDonald et al., 2006, Khodosh et al., 2006, Whited et al., 2007, Yu et al., 2005, Chen et al., 2006, Mathews et al., 2006, Wang et al., 2006, Keene et al., 2006, Komiyama et al., 2007, Ang et al., 2006, Parrish et al., 2006, Berdnik et al., 2006, Komiyama et al., 2004, Goldman et al., 2005, Sweeney et al., 2006, Hoopfer et al., 2008, Kamikouchi et al., 2006, Kim et al., 2006, Friedman and Perrimon, 2006, Mandal et al., 2007, Krzemień et al., 2007, Ebacher et al., 2007, Zhu et al., 2006, Kobayashi et al., 2006, Apitz et al., 2005, Thum et al., 2011, Ward et al., 2006, Girard et al., 2006, Kurtovic et al., 2007, Murakami et al., 2007, Thomas and van Meyel, 2007, Wang et al., 2004, Fei et al., 2002, Bello et al., 2007, Williams and Truman, 2004, Lin et al., 2007, Mehren and Griffith, 2004, Sugimura et al., 2004, Li et al., 2004, Ye et al., 2007, Cafferty et al., 2006, Assa-Kunik et al., 2007, Hewes et al., 2006, Friggi-Grelin et al., 2006, Schnorrer et al., 2007, Udolph et al., 2009, Zhan et al., 2004, Matthews et al., 2007, Keene et al., 2004, Suster et al., 2003, Joly et al., 2007, Grueber et al., 2007, Pandey et al., 2011, Chen et al., 2012, Schnakenberg et al., 2011, Poeck et al., 2008, Iyengar et al., 2006, Honjo and Furukubo-Tokunaga, 2009, Rayburn et al., 2009, Spletter et al., 2007, Kwon et al., 2008, Bottenberg et al., 2009, Gorczyca et al., 2007, Lu et al., 2009, Sakurai et al., 2007, Parrish et al., 2009, Weng et al., 2010, Chen et al., 2012, Berger et al., 2008, Rallis et al., 2010, Prakash et al., 2009, Mathur et al., 2010, Bates et al., 2010, Potter et al., 2010, Agrawal et al., 2010, Orso et al., 2009, Hassan et al., 2005, Martini and Davis, 2005, Kolodziejczyk et al., 2008, Usha and Shashidhara, 2010, Helmstadter et al., 2012, Blanco et al., 2010, Alekseyenko et al., 2010, Bidla et al., 2007, Lone et al., 2010, Hekmat-Scafe et al., 2010, Chou et al., 2010, Boerner and Duch, 2010, Young and Armstrong, 2010, Li et al., 2009, Nagoshi et al., 2010, Certel et al., 2010, Satoh et al., 2008, Kim et al., 2010, Tsurudome et al., 2010, White et al., 2010, Daniels et al., 2011, Chiang et al., 2011, Padash-Barmchi et al., 2010, Stewart et al., 2012, Ding et al., 2011, Masuda-Nakagawa et al., 2010, Bai et al., 2009, Roy et al., 2007, Orihara-Ono et al., 2011, Chang et al., 2011, Danjo et al., 2011, Narbonne-Reveau et al., 2011, Brankatschk and Dickson, 2006, Kuzina et al., 2011, Lai et al., 2012, Petersen and Stowers, 2011, Stowers, 2011, Rossetto et al., 2011, Raghu and Borst, 2011, Viktorin et al., 2011, Laurençon et al., 2007, Awasaki et al., 2011, Awasaki et al., 2008, Johard et al., 2009, Sun et al., 2009, Roch et al., 2010, Zheng et al., 2010, Mathur et al., 2010, Tsuda et al., 2010, Liu et al., 2010, Gong et al., 2010, Li et al., 2010, Kosmidis et al., 2010, Berger et al., 2012, Stephan et al., 2011, Manning et al., 2012)
Mmus\Cd8a
 
Mus\Cd8a
 
Name Synonym
Secondary FlyBase IDs
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hide Recent research papers ( 170 )
Okamoto et al., 2013, Genes Dev. 27(1): 87--97
A secreted decoy of InR antagonizes insulin/IGF signaling to restrict body growth in Drosophila. [FBrf0220509]
Acebes et al., 2012, J. Neurosci. 32(2): 417--422
Central Adaptation to Odorants Depends on PI3K Levels in Local Interneurons of the Antennal Lobe. [FBrf0217241]
Aso et al., 2012, PLoS Genet. 8(7): e1002768
Three dopamine pathways induce aversive odor memories with different stability. [FBrf0218860]
Berdnik et al., 2012, J. Neurosci. 32(24): 8331--8340
The SUMO Protease Verloren Regulates Dendrite and Axon Targeting in Olfactory Projection Neurons. [FBrf0218602]
Berger et al., 2012, Cell Rep. 2(2): 407--418
FACS Purification and Transcriptome Analysis of Drosophila Neural Stem Cells Reveals a Role for Klumpfuss in Self-Renewal. [FBrf0219320]
Boiko et al., 2012, J. Biol. Chem. 287(47): 39878--39886
Pickpocket1 is an ionotropic molecular sensory transducer. [FBrf0219990]
Bossing et al., 2012, Dev. Cell 23(2): 433--440
Disruption of Microtubule Integrity Initiates Mitosis during CNS Repair. [FBrf0219196]
Bousquet et al., 2012, Proc. Natl. Acad. Sci. U.S.A. 109(1): 249--254
Expression of a desaturase gene, desat1, in neural and nonneural tissues separately affects perception and emission of sex pheromones in Drosophila. [FBrf0217137]
Chen et al., 2012, EMBO J. 31(12): 2798--2809
Reshaping of global gene expression networks and sex-biased gene expression by integration of a young gene. [FBrf0218712]
Chen et al., 2012, Dev. Neurobiol. 72(11): 1422--1432
The POU-domain protein Pdm3 regulates axonal targeting of R neurons in the Drosophila ellipsoid body. [FBrf0219674]
Chen and Ganetzky, 2012, J. Cell Biol. 196(4): 529--543
A neuropeptide signaling pathway regulates synaptic growth in Drosophila. [FBrf0217500]
Dearborn et al., 2012, PLoS ONE 7(5): e37303
Reph, a Regulator of Eph Receptor Expression in the Drosophila melanogaster Optic Lobe. [FBrf0218347]
Enriquez et al., 2012, Dev. Biol. 363(1): 27--39
Combinatorial coding of Drosophila muscle shape by Collier and Nautilus. [FBrf0217465]
Gault et al., 2012, J. Cell Biol. 196(5): 605--621
Drosophila CK1-γ, gilgamesh, controls PCP-mediated morphogenesis through regulation of vesicle trafficking. [FBrf0217630]
Giagtzoglou et al., 2012, J. Cell Biol. 196(1): 65--83
dEHBP1 Controls Exocytosis and Recycling of Delta During Asymmetric Divisions. [FBrf0217836]
Helmstadter et al., 2012, PLoS ONE 7(7): e40300
Functional Study of Mammalian Neph Proteins in Drosophila melanogaster. [FBrf0218912]
Hergarden et al., 2012, Proc. Natl. Acad. Sci. U.S.A. 109(10): 3967--3972
Allatostatin-A neurons inhibit feeding behavior in adult Drosophila. [FBrf0217661]
Hong et al., 2012, Nature 484(7393): 201--207
Teneurins instruct synaptic partner matching in an olfactory map. [FBrf0218059]
Inagaki et al., 2012, Cell 148(3): 583--595
Visualizing Neuromodulation In Vivo: TANGO-Mapping of Dopamine Signaling Reveals Appetite Control of Sugar Sensing. [FBrf0217362]
Ishida et al., 2012, PLoS ONE 7(2): e30265
Prevention of Apoptosis by Mitochondrial Phosphatase PGAM5 in the Mushroom Body Is Crucial for Heat Shock Resistance in Drosophila melanogaster. [FBrf0217492]
Jafari et al., 2012, PLoS Biol. 10(3): e1001280
Combinatorial activation and repression by seven transcription factors specify Drosophila odorant receptor expression. [FBrf0217822]
Jenett et al., 2012, Cell Rep. 2(4): 991--1001
A GAL4-Driver Line Resource for Drosophila Neurobiology. [FBrf0219813]
Jepson et al., 2012, PLoS Genet. 8(4): e1002671
dyschronic, a Drosophila Homolog of a Deaf-Blindness Gene, Regulates Circadian Output and Slowpoke Channels. [FBrf0218124]
Jin et al., 2012, PLoS ONE 7(7): e40912
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The role of Drosophila Piezo in mechanical nociception. [FBrf0217681]
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Evi5 promotes collective cell migration through its Rab-GAP activity. [FBrf0218839]
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The p150(Glued) CAP-Gly Domain Regulates Initiation of Retrograde Transport at Synaptic Termini. [FBrf0218160]
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A putative tyrosine phosphorylation site of the cell surface receptor Golden goal is involved in synaptic layer selection in the visual system. [FBrf0217291]
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A Resource for Manipulating Gene Expression and Analyzing cis-Regulatory Modules in the Drosophila CNS. [FBrf0219785]
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Mapping neural circuits with activity-dependent nuclear import of a transcription factor. [FBrf0217864]
Moraru et al., 2012, Neural Dev. 7(1): 14
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Trans-synaptic Teneurin signalling in neuromuscular synapse organization and target choice. [FBrf0218053]
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Fascin controls neuronal class-specific dendrite arbor morphology. [FBrf0219030]
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Joint control of Drosophila male courtship behavior by motion cues and activation of male-specific P1 neurons. [FBrf0218611]
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Using translational enhancers to increase transgene expression in Drosophila. [FBrf0218136]
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Homeobox gene distal-less is required for neuronal differentiation and neurite outgrowth in the Drosophila olfactory system. [FBrf0217395]
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Whacked and Rab35 polarize dynein-motor-complex-dependent seamless tube growth. [FBrf0217936]
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Interaction of Notch Signaling Modulator Numb with α-Adaptin Regulates Endocytosis of Notch Pathway Components and Cell Fate Determination of Neural Stem Cells. [FBrf0218342]
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Katanin p60-like1 Promotes Microtubule Growth and Terminal Dendrite Stability in the Larval Class IV Sensory Neurons of Drosophila. [FBrf0219283]
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A neuropeptide circuit that coordinates sperm transfer and copulation duration in Drosophila. [FBrf0220217]
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Contact Chemoreceptors Mediate Male-Male Repulsion and Male-Female Attraction during Drosophila Courtship. [FBrf0218411]
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Dendritic Filopodia, Ripped Pocket, NOMPC, and NMDARs Contribute to the Sense of Touch in Drosophila Larvae. [FBrf0219946]
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A Screen for Genes Expressed in the Olfactory Organs of Drosophila melanogaster Identifies Genes Involved in Olfactory Behaviour. [FBrf0218110]
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Huntingtin Aggregation Kinetics and Their Pathological Role in a Drosophila Huntington's Disease Model. [FBrf0217529]
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Changes in Notch signaling coordinates maintenance and differentiation of the Drosophila larval optic lobe neuroepithelia. [FBrf0219799]
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Time-lapse imaging reveals stereotypical patterns of Drosophila midline glial migration. [FBrf0217061]
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Snakeskin, a membrane protein associated with smooth septate junctions, is required for intestinal barrier function in Drosophila. [FBrf0218431]
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Axon Regrowth during Development and Regeneration Following Injury Share Molecular Mechanisms. [FBrf0219661]
Zhang et al., 2012, PLoS ONE 7(2): e31994
Control of tissue growth and cell transformation by the salvador/warts/hippo pathway. [FBrf0217552]
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Thermosensory and non-thermosensory isoforms of Drosophila melanogaster TRPA1 reveal heat sensor domains of a thermoTRP channel. [FBrf0217493]
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Molecular Genetic Analysis of Sexual Rejection: Roles of Octopamine and Its Receptor OAMB in Drosophila Courtship Conditioning. [FBrf0219612]
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The Drosophila SK Channel (dSK) Contributes to Photoreceptor Performance by Mediating Sensitivity Control at the First Visual Network. [FBrf0216279]
Abuin et al., 2011, Neuron 69(1): 44--60
Functional architecture of olfactory ionotropic glutamate receptors. [FBrf0212725]
Acebes et al., 2011, J. Neurosci. 31(8): 2734--2745
Synapse loss in olfactory local interneurons modifies perception. [FBrf0213264]
Becnel et al., 2011, PLoS ONE 6(6): e20800
The Serotonin 5-HT(7)Dro Receptor Is Expressed in the Brain of Drosophila, and Is Essential for Normal Courtship and Mating. [FBrf0213968]
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Involvement of the drosophila taurine/aspartate transporter dEAAT2 in selective olfactory and gustatory perceptions. [FBrf0214574]
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Go α is involved in sugar perception in Drosophila. [FBrf0212580]
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Systematic discovery of rab GTPases with synaptic functions in Drosophila. [FBrf0216517]
Chang et al., 2011, PLoS Genet. 7(2): e1001288
Pathogenic VCP/TER94 Alleles Are Dominant Actives and Contribute to Neurodegeneration by Altering Cellular ATP Level in a Drosophila IBMPFD Model. [FBrf0213008]
Charlton-Perkins et al., 2011, Neural Dev. 6: 20
Prospero and Pax2 combinatorially control neural cell fate decisions by modulating Ras- and Notch-dependent signaling. [FBrf0213993]
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Three-Dimensional Reconstruction of Brain-wide Wiring Networks in Drosophila at Single-Cell Resolution. [FBrf0212704]
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Presynapses in Kenyon Cell Dendrites in the Mushroom Body Calyx of Drosophila. [FBrf0214059]
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Multiple TGF-β Superfamily Signals Modulate the Adult Drosophila Immune Response. [FBrf0216429]
Cognigni et al., 2011, Cell Metab. 13(1): 92--104
Enteric neurons and systemic signals couple nutritional and reproductive status with intestinal homeostasis. [FBrf0212594]
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Nitric oxide coordinates metabolism, growth, and development via the nuclear receptor E75. [FBrf0214403]
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Increased vesicular glutamate transporter expression causes excitotoxic neurodegeneration. [FBrf0212635]
Danjo et al., 2011, PLoS ONE 6(2): e17131
A tripartite synapse model in Drosophila. [FBrf0213114]
Deng et al., 2011, PLoS ONE 6(4): e18605
The Stimulatory Gα(s) Protein Is Involved in Olfactory Signal Transduction in Drosophila. [FBrf0213437]
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Adult-specific electrical silencing of pacemaker neurons uncouples molecular clock from circadian outputs. [FBrf0216659]
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Glial cell adhesive molecule unzipped mediates axon guidance in Drosophila. [FBrf0212620]
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In Vivo RNAi Screen Reveals Neddylation Genes as Novel Regulators of Hedgehog Signaling. [FBrf0215574]
Freer et al., 2011, Gene Expr. Patterns 11(8): 533--546
Molecular and functional analysis of Drosophila single-minded larval central brain expression. [FBrf0216483]
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The coding of temperature in the Drosophila brain. [FBrf0213085]
Galy et al., 2011, Dev. Biol. 359(1): 37--46
CYFIP dependent Actin Remodeling controls specific aspects of Drosophila eye morphogenesis. [FBrf0216378]
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The Serotonin Transporter Expression in Drosophila melanogaster. [FBrf0213697]
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A versatile in vivo system for directed dissection of gene expression patterns. [FBrf0213287]
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The cytoskeletal regulator Genghis khan is required for columnar target specificity in the Drosophila visual system. [FBrf0216508]
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Sexually dimorphic shaping of interneuron dendrites involves the hunchback transcription factor. [FBrf0213400]
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The receptor tyrosine kinase alk controls neurofibromin functions in Drosophila growth and learning. [FBrf0216258]
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Isoform-Specific Regulation of a Steroid Hormone Nuclear Receptor by an E3 Ubiquitin Ligase in Drosophila melanogaster. [FBrf0216551]
Granell et al., 2011, ACS Chem. Biol. 6(11): 1287--1295
DmSAS Is Required for Sialic Acid Biosynthesis in Cultured Drosophila Third Instar Larvae CNS neurons. [FBrf0216725]
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An olfactory receptor for food-derived odours promotes male courtship in Drosophila. [FBrf0216424]
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Flybow: genetic multicolor cell labeling for neural circuit analysis in Drosophila melanogaster. [FBrf0213120]
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Golden Goal collaborates with Flamingo in conferring synaptic-layer specificity in the visual system. [FBrf0213128]
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Enhancer-driven membrane markers for analysis of nonautonomous mechanisms reveal neuron-glia interactions in Drosophila. [FBrf0213916]
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A SNX3-dependent retromer pathway mediates retrograde transport of the Wnt sorting receptor Wntless and is required for Wnt secretion. [FBrf0216275]
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A New Prospero and microRNA-279 Pathway Restricts CO2 Receptor Neuron Formation. [FBrf0216631]
Hasegawa et al., 2011, Development 138(5): 983--993
Concentric zones, cell migration and neuronal circuits in the Drosophila visual center. [FBrf0213020]
Hatan et al., 2011, J. Cell Biol. 192(2): 307--319
The Drosophila blood brain barrier is maintained by GPCR-dependent dynamic actin structures. [FBrf0212807]
Henthorn et al., 2011, Mol. Biol. Cell 22(21): 4038--4046
A role for kinesin heavy chain in controlling vesicle transport into dendrites in Drosophila. [FBrf0216511]
Itoh et al., 2011, Genes Cells 16(12): 1159--1167
Membrane-bound transporter controls the circadian transcription of clock genes in Drosophila. [FBrf0216813]
Kahsai and Winther, 2011, J. Comp. Neurol. 519(2): 290--315
Chemical neuroanatomy of the Drosophila central complex: distribution of multiple neuropeptides in relation to neurotransmitters. [FBrf0212649]
Kang et al., 2011, PLoS ONE 6(12): e29800
Novel Cytochrome P450, cyp6a17, Is Required for Temperature Preference Behavior in Drosophila. [FBrf0217065]
Karim and Moore, 2011, J. Neurosci. 31(47): 17017--17027
Convergent local identity and topographic projection of sensory neurons. [FBrf0216770]
Kazama et al., 2011, J. Neurosci. 31(21): 7619--7630
Cell Death Triggers Olfactory Circuit Plasticity via Glial Signaling in Drosophila. [FBrf0213815]
Keene et al., 2011, J. Neurosci. 31(17): 6527--6534
Distinct visual pathways mediate Drosophila larval light avoidance and circadian clock entrainment. [FBrf0213587]
Keller et al., 2011, Neuron 72(5): 760--775
Glial-derived prodegenerative signaling in the Drosophila neuromuscular system. [FBrf0216904]
Kim et al., 2011, Neurochem. Res. 36(5): 879--893
Pharmacogenetic Regulation of Acetylcholinesterase Activity in Drosophila Reveals the Regulatory Mechanisms of AChE Inhibitors in Synaptic Plasticity. [FBrf0213378]
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Drosophila tao Controls Mushroom Body Development and Ethanol-Stimulated Behavior through par-1. [FBrf0212818]
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Autoregulatory and paracrine control of synaptic and behavioral plasticity by octopaminergic signaling. [FBrf0212895]
Kottler et al., 2011, PLoS ONE 6(10): e25902
Debra, a protein mediating lysosomal degradation, is required for long-term memory in Drosophila. [FBrf0216394]
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Epigenetic Regulation of Learning and Memory by Drosophila EHMT/G9a. [FBrf0212836]
Kulkarni et al., 2011, PLoS ONE 6(11): e27667
Asrij Maintains the Stem Cell Niche and Controls Differentiation during Drosophila Lymph Gland Hematopoiesis. [FBrf0216819]
Kuzina et al., 2011, Development 138(9): 1839--1849
How Notch establishes longitudinal axon connections between successive segments of the Drosophila CNS. [FBrf0213493]
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Molecular and cellular organization of the taste system in the Drosophila larva. [FBrf0216529]
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Serotonin-mushroom body circuit modulating the formation of anesthesia-resistant memory in Drosophila. [FBrf0214737]
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The hector G-Protein Coupled Receptor Is Required in a Subset of fruitless Neurons for Male Courtship Behavior. [FBrf0216834]
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Blockade of the release of the neuropeptide leucokinin to determine its possible functions in fly behavior: Chemoreception assays. [FBrf0213007]
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Lack of an antibacterial response defect in Drosophila toll-9 mutant. [FBrf0213211]
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Multiple new site-specific recombinases for use in manipulating animal genomes. [FBrf0214794]
Neumüller et al., 2011, Cell Stem Cell 8(5): 580--593
Genome-Wide Analysis of Self-Renewal in Drosophila Neural Stem Cells by Transgenic RNAi. [FBrf0213621]
Ohler et al., 2011, Dev. Dyn. 240(1): 135--148
Hts, the Drosophila homologue of adducin, physically interacts with the transmembrane receptor golden goal to guide photoreceptor axons. [FBrf0212583]
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Intertissue mechanical stress affects frizzled-mediated planar cell polarity in the Drosophila notum epidermis. [FBrf0212947]
Orihara-Ono et al., 2011, Dev. Biol. 351(1): 163--175
Downregulation of Notch mediates the seamless transition of individual Drosophila neuroepithelial progenitors into optic medullar neuroblasts during prolonged G1. [FBrf0212978]
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Nuclear Receptor DHR4 Controls the Timing of Steroid Hormone Pulses During Drosophila Development. [FBrf0216318]
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The Glucuronyltransferase GlcAT-P Is Required for Stretch Growth of Peripheral Nerves in Drosophila. [FBrf0216828]
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Robo-3-mediated repulsive interactions guide R8 axons during Drosophila visual system development. [FBrf0213605]
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A Gateway MultiSite Recombination Cloning Toolkit. [FBrf0215584]
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A pair of inhibitory neurons are required to sustain labile memory in the Drosophila mushroom body. [FBrf0213725]
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A genome-wide RNA interference screen uncovers two p24 proteins as regulators of Wingless secretion. [FBrf0216532]
Raghu and Borst, 2011, PLoS ONE 6(5): e19472
Candidate glutamatergic neurons in the visual system of Drosophila. [FBrf0213690]
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Regulation of Drosophila glial cell proliferation by Merlin-Hippo signaling. [FBrf0216584]
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Defhc1.1, a homologue of the juvenile myoclonic gene EFHC1, modulates architecture and basal activity of the neuromuscular junction in Drosophila. [FBrf0216330]
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Neuronal remodeling and apoptosis require VCP-dependent degradation of the apoptosis inhibitor DIAP1. [FBrf0213078]
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Sperm-storage defects and live birth in Drosophila females lacking spermathecal secretory cells. [FBrf0216767]
Schulte et al., 2011, PLoS ONE 6(8): e23841
High-Content Chemical and RNAi Screens for Suppressors of Neurotoxicity in a Huntington's Disease Model. [FBrf0215266]
Shao et al., 2011, Proc. Natl. Acad. Sci. U.S.A. 108(46): 18831--18836
Schizophrenia susceptibility gene dysbindin regulates glutamatergic and dopaminergic functions via distinctive mechanisms in Drosophila. [FBrf0216775]
Shen et al., 2011, Science 331(6022): 1333--1336
Function of rhodopsin in temperature discrimination in Drosophila. [FBrf0213227]
Shih and Chiang, 2011, J. Neurogenet. 25(1-2): 1--6
Anatomical Characterization of Thermosensory AC Neurons in the Adult Drosophila Brain. [FBrf0213700]
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Complementary Function and Integrated Wiring of the Evolutionarily Distinct Drosophila Olfactory Subsystems. [FBrf0215822]
Slawson et al., 2011, Genetics 187(1): 171--184
Central Regulation of Locomotor Behavior of Drosophila melanogaster Depends on a CASK Isoform Containing CaMK-Like and L27 Domains. [FBrf0212754]
Stephan et al., 2011, Mol. Biol. Cell 22(21): 4079--4092
Membrane-targeted WAVE mediates photoreceptor axon targeting in the absence of the WAVE complex in Drosophila. [FBrf0216499]
Stowers, 2011, Fly 5(4): 371--378
An efficient method for recombineering GAL4 and QF drivers. [FBrf0216432]
Sweeney et al., 2011, Neuron 72(5): 734--747
Secreted Semaphorins from Degenerating Larval ORN Axons Direct Adult Projection Neuron Dendrite Targeting. [FBrf0216932]
Séjourné et al., 2011, Nat. Neurosci. 14(7): 903--910
Mushroom body efferent neurons responsible for aversive olfactory memory retrieval in Drosophila. [FBrf0214029]
Takemura et al., 2011, Curr. Biol. 21(24): 2077--2084
Cholinergic circuits integrate neighboring visual signals in a Drosophila motion detection pathway. [FBrf0217052]
Takemura and Adachi-Yamada, 2011, Dev. Biol. 357(2): 336--346
Cell death and selective adhesion reorganize the dorsoventral boundary for zigzag patterning of Drosophila wing margin hairs. [FBrf0214791]
Tao and Rolls, 2011, J. Neurosci. 31(14): 5398--5405
Dendrites have a rapid program of injury-induced degeneration that is molecularly distinct from developmental pruning. [FBrf0213404]
Tea and Luo, 2011, Neural Dev. 6: 5
The chromatin remodeling factor Bap55 functions through the TIP60 complex to regulate olfactory projection neuron dendrite targeting. [FBrf0213006]
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Diversity, variability, and suboesophageal connectivity of antennal lobe neurons in D. melanogaster larvae. [FBrf0216269]
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Focusing Transgene Expression in Drosophila by Coupling Gal4 With a Novel Split-LexA Expression System. [FBrf0213643]
Tomita et al., 2011, J. Neurosci. 31(37): 13137--13146
Pan-Neuronal Knockdown of Calcineurin Reduces Sleep in the Fruit Fly, Drosophila melanogaster. [FBrf0215571]
Tripura et al., 2011, Int. J. Dev. Biol. 55(6): 583--590
Regulation and activity of JNK signaling in the wing disc peripodial membrane during adult morphogenesis in Drosophila. [FBrf0216296]
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Neurons with cholinergic phenotype in the visual system of Drosophila. [FBrf0212356]
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Multipotent neural stem cells generate glial cells of the central complex through transit amplifying intermediate progenitors in Drosophila brain development. [FBrf0214495]
von Philipsborn et al., 2011, Neuron 69(3): 509--522
Neuronal control of Drosophila courtship song. [FBrf0212984]
Wang et al., 2011, Int. J. Dev. Biol. 55(2): 223--227
Spatially controlled expression of the Drosophila pseudouridine synthase RluA-1. [FBrf0213886]
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Hierarchical chemosensory regulation of male-male social interactions in Drosophila. [FBrf0213751]
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Drosophila TRPA Channel Painless Inhibits Male-Male Courtship Behavior through Modulating Olfactory Sensation. [FBrf0216587]
Weiss et al., 2011, Neuron 69(2): 258--272
The Molecular and Cellular Basis of Bitter Taste in Drosophila. [FBrf0212834]
Wen et al., 2011, Mol. Cell. Neurosci. 48(1): 1--8
Nmnat exerts neuroprotective effects in dendrites and axons. [FBrf0214616]
Wisotsky et al., 2011, Nat. Neurosci. 14(12): 1534--1541
Evolutionary differences in food preference rely on Gr64e, a receptor for glycerol. [FBrf0216771]
Wu et al., 2011, Curr. Biol. 21(10): 848--854
Heterotypic Gap Junctions between Two Neurons in the Drosophila Brain Are Critical for Memory. [FBrf0213804]
Yang et al., 2011, Neuron 72(2): 285--299
Nak regulates localization of clathrin sites in higher-order dendrites to promote local dendrite growth. [FBrf0216477]
Ye et al., 2011, J. Neurosci. 31(9): 3309--3319
Differential regulation of dendritic and axonal development by the novel kruppel-like factor dar1. [FBrf0213162]
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Light-induced structural and functional plasticity in Drosophila larval visual system. [FBrf0215276]
Zhu et al., 2011, Proc. Natl. Acad. Sci. U.S.A. 108(51): 20615--20620
Ets transcription factor Pointed promotes the generation of intermediate neural progenitors in Drosophila larval brains. [FBrf0216951]
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