A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Recombinant construct P{Act5C-GAL4}

General Information
Symbol P{Act5C-GAL4} FlyBase ID FBtp0001406
Feature type transgenic_transposon
Size 12.481 Expression data GAL4 reporter/driver
Associated insertions 3 available
Molecular map
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Description
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This section contains items that were added to this record for each release. It currently only tracks new links between this FlyBase report and other FlyBase data classes (e.g. genes, references, stocks) or controlled vocabulary terms (e.g. GO, anatomy terms).
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FB2013_03
FB2013_02
Controlled Vocabulary Terms
All updates Click here to see a list of all updates to this record from FB2010_08 and on.
hide Description & Uses
Species synthetic construct
Location-dependent
role
carries FRT site(s)
Description
CV term
Qualifiers & info
Reference
transposon
P-element
Uses
CV term
Qualifiers & info
Reference
analytical tool
mosaic analysis
binary system (regulatory)
Cloning Sites
Location
Restriction sites
Reference
hide Sequence Data
Sequence (FB) FlyBase-compiled
Associated Sequence Data
DDBJ /
EMBL /
GenBank
DNA sequence
Extent
 
hide Segments & Size
Total Size
12.481
Left end
Right end
Segments
Number
Orientation
Symbol
2
+
4
+
Reference (Ito et al., 1997)
hide Features
CV term
Qualifiers & info
Reference
binary
component
chimeric
general
promoter
partial
rescue
reporter
selectable
marker
hide Component Alleles
Allele Scer\GAL4Act5C.PI
Reference(s) (Ito et al., 1997, Tue et al., 2011, Zhong et al., 2011, Baumann et al., 2010, Harterink et al., 2011, Stavropoulos and Young, 2011, Shah et al., 2012, Mitonaka et al., 2007, Port et al., 2011, Inada et al., 2011, Xu et al., 2012, Birner-Gruenberger et al., 2012, Verma et al., 2012, Fernandez-Ayala et al., 2009, Wen et al., 2012, McKinley et al., 2012, Terhzaz et al., 2012, Keegan et al., 2011, Lang et al., 2012, Shao et al., 2011, Reddy and Irvine, 2011, Zhang et al., 2011, Benna et al., 2010, Baonza and Freeman, 2005, Zielke et al., 2006, Nieratschker et al., 2009, Luders et al., 2003, Greeve et al., 2004, Martin-Lanneree et al., 2006, Yoshida et al., 2004, Baena-Lopez et al., 2005, Hayashi and Carthew, 2004, Brumby et al., 2002, del Alamo Rodriguez et al., 2002, Giordano et al., 2002, Baena-Lopez et al., 2005, Major and Irvine, 2005, Baonza and Freeman, 2001, Uhlirova et al., 2005, Palmer et al., 1999, Bessa and Casares, 2005, Drapeau et al., 2003, Fujise et al., 2003, Kolzer et al., 2003, Buckles et al., 2001, Schaefer et al., 2001, Takeo et al., 2005, Bastock et al., 2003, Kramer et al., 2003, Adachi-Yamada et al., 1999, Silver et al., 2005, Pitman et al., 2002, Cohen et al., 2002, Rauskolb, 2001, Subramanian et al., 2003, Keegan et al., 2005, Zordan et al., 2006, Dai et al., 2003, MacKay et al., 2003, Goto et al., 2001, Selva et al., 2001, Missirlis et al., 2001, van de Bor et al., 2002, Mongelard et al., 2002, Lee and Adler, 2002, Duchek et al., 2001, Missirlis et al., 2002, Tschaepe et al., 2002, Walker et al., 2006, Magie et al., 2002, Cavodeassi et al., 2002, Eun et al., 2007, Furuhashi et al., 2006, Mohan et al., 2007, Niki et al., 2006, Niki, 2006, Anderson et al., 2006, Stabell et al., 2006, Cherbas et al., 2003, Green et al., 2003, Nakagoshi et al., 2002, Glise et al., 2002, Zraly et al., 2003, Chou and Chien, 2002, Okajima and Irvine, 2002, Lengyel and Merriam, 2001, Evans et al., 2002, Akieda and Merriam, 2001, Bardot et al., 2002, Belote and Fortier, 2002, Enerly et al., 2002, Reichhart et al., 2002, Hennig and Neufeld, 2002, Kashevsky et al., 2002, Potter et al., 2002, Callus and Mathey-Prevot, 2002, Matakatsu and Blair, 2004, Chang et al., 2002, Chao et al., 2004, Alvarado et al., 2004, Fujii and Amrein, 2002, Niwa et al., 2004, Griffitts et al., 2003, Singh et al., 2004, Bai and Montell, 2002, Baonza and Freeman, 2002, Fitzpatrick et al., 2002, Araki et al., 2003, Wang et al., 2009, Zhu et al., 2007, Singh et al., 2002, Frankfort and Mardon, 2004, Enerly et al., 2003, Adachi-Yamada and O'Connor, 2002, Xu et al., 2002, del Alamo Rodriguez et al., 2004, Botella et al., 2004, Yan et al., 2004, Warner and Longmore, 2009, Elalayli et al., 2008, Roch and Akam, 2000, Dolezal et al., 2003, Kandachar et al., 2008, Mason et al., 2003, Alcedo et al., 2000, Chang et al., 2003, Pagliarini and Xu, 2003, Huang and Rubin, 2000, Kramerova et al., 2000, Cavodeassi et al., 2000, Bao and Cagan, 2005, Kumar and Moses, 2001, Geng et al., 2000, Hirosawa-Takamori et al., 2000, Flores et al., 2000, Liu and Lengyel, 2000, Chen et al., 2000, Tanimoto et al., 2000, Liu et al., 2000, Moon et al., 2005, Baonza et al., 2000, Baonza et al., 2000, Rauskolb et al., 1999, Baonza and Garcia-Bellido, 2000, Cavodeassi et al., 1999, Sawamoto et al., 1999, Goto and Hayashi, 1999, Rauskolb and Irvine, 1999, Adachi-Yamada et al., 2005, Adachi-Yamada et al., 1999, Aldaz et al., 2005, Han et al., 2005, von Stein et al., 2005, Okumura et al., 2005, Tanentzapf et al., 2000, Niwa et al., 2004, Somogyi and Rorth, 2004, Nakano et al., 2004, Reiling and Hafen, 2004, Adam and Montell, 2004, Perez-Garijo et al., 2004, Pinheiro and Montell, 2004, Hori et al., 2004, Piccin et al., 2001, Yang and Sehgal, 2001, Keisman and Baker, 2001, Ekengren et al., 2001, Sonoda and Wharton, 2001, Tomoyasu et al., 1998, Strutt, 2001, Potter et al., 2001, Papayannopoulos et al., 1998, Loren et al., 2001, Dominguez et al., 1998, Bloomington Drosophila Stock Center, 1998.9.14, Behr et al., 2003, Galloni, 2003, Kango-Singh et al., 2003, Shivdasani and Ingham, 2003, Jin et al., 2003, Patel et al., 2003, Brennecke et al., 2003, Sabatier et al., 2003, Pastor-Pareja et al., 2004, Ji and Clark, 2006, Hickey et al., 2006, Atkey et al., 2006, Hofmeyer, 2006, Matakatsu and Blair, 2006, Gibson et al., 2006, McEwen and Peifer, 2005, Mosimann et al., 2006, Rives et al., 2006, Wells et al., 2006, Kent et al., 2006, Bazigou et al., 2007, Bartscherer et al., 2006, Oshima, 2006, Celotto et al., 2006, Abdu et al., 2006, Lyalin et al., 2006, Gronke et al., 2005, Mulinari et al., 2006, Jacobsen et al., 2006, Bazigou et al., 2007, Kuranaga et al., 2006, Stergiopoulos et al., 2009, Voigt et al., 2002, Takeuchi et al., 2009, Vidal et al., 2006, Igaki et al., 2006, Niwa et al., 2008, Keyser et al., 2007, Oh and Irvine, 2009, Walters et al., 2006, Brown et al., 2006, Zhai et al., 2006, Sage et al., 2008, Yang et al., 2005, Yasunaga et al., 2006, Glittenberg et al., 2006, Ninov et al., 2007, Song et al., 2007, Hagedorn et al., 2006, He et al., 2005, Polaski et al., 2006, Mao et al., 2006, Jafar-Nejad, 2005, Seto and Bellen, 2006, Muhlig-Versen et al., 2005, Ahmad and Henikoff, 2001, Chotard et al., 2005, Kamimura et al., 2006, Chung et al., 2007, Ishikawa et al., 2005, Park et al., 2006, Strutt et al., 2004, Araki et al., 2005, Stabell et al., 2007, Kirilly et al., 2005, Lee and Cooley, 2007, Wang et al., 2007, Martin et al., 2005, Félix et al., 2007, Taylor et al., 2004, Maxwell et al., 2008, Takahashi et al., 2007, Rajendran et al., 2008, Ratan et al., 2008, Eun et al., 2008, Markstein et al., 2008, Draper et al., 2007, Hallson et al., 2008, Rollins et al., 2004, Kirilly et al., 2005, Norgate et al., 2006, Thompson and Travers, 2008, Cliffe et al., 2009, Yoshioka et al., 2008, Venkatachalam et al., 2008, Steiger et al., 2008, Mandalaywala et al., 2008, Lee et al., 2009, Yan et al., 2009, Ford et al., 2007, Lin et al., 2009, Seigle et al., 2008, Liu et al., 2009, Arya and Lakhotia, 2008, Eivers et al., 2009, Bretman et al., 2010, Wang and Kalderon, 2009, Svendsen et al., 2009, Grönke et al., 2009, Morris et al., 2006, Le Mée et al., 2008, Mallik and Lakhotia, 2009, Shahidullah et al., 2009, Das Thakur et al., 2010, Ogasawara et al., 2007, Wagner et al., 2010, Rousset et al., 2010, Ballard et al., 2010, Villányi et al., 2008, Hua et al., 2010, Gluderer et al., 2010, Alfonso-Parra and Maggert, 2010, El Chamy et al., 2008, Sekyrova et al., 2010, Matusek et al., 2008, Gou et al., 2010, Fraichard et al., 2010, Nakamura et al., 2010, Kim et al., 2010, Tsai and Sun, 2004, Igaki et al., 2009, Agrawal et al., 2009, Ni et al., 2009, Peralta et al., 2009, Loveall and Deitcher, 2010, Bodai et al., 2007, Mallik and Lakhotia, 2010, Takahashi et al., 2010, Puseenam et al., 2009, Sharma et al., 2008, Tang et al., 2010, Sanders et al., 2010, Rhiner et al., 2010, Spain et al., 2010, Hall et al., 2010, Carra et al., 2010, Kim et al., 2010, Tsuda et al., 2010, Beinert et al., 2004, Ferretti et al., 2010, Dubin-Bar et al., 2008, Friggi-Grelin et al., 2003, Saja et al., 2010, Honegger et al., 2008, Marinho et al., 2011, Wang et al., 2008, Klusza and Deng, 2010, Köhler et al., 2009, Cho and Fischer, 2011, Yu et al., 2011, Wang et al., 2010, Onorati et al., 2011, Hector et al., 2009, Brideau and Barbash, 2011, Tan et al., 2011, Kawamori and Yamaguchi, 2011, Nishimura et al., 2008, Montagne et al., 2010, Rauskolb et al., 2011, Schwedes et al., 2011, Renfranz et al., 2010, Meyer et al., 2011, Colinet et al., 2010, Colinet et al., 2010, Cui et al., 2008, Du et al., 2011, Patalano et al., 2009, Benna et al., 2009, Terhzaz et al., 2010, Johnson et al., 2010, Xie et al., 2010, Bosveld et al., 2012, Tsigkari et al., 2012, Isaji et al., 2011, Luo et al., 2012, Ji and Tulin, 2012, Daenzer et al., 2012, Saleem et al., 2012, Lawlor et al., 2012, Gault et al., 2012, Herz et al., 2012, Dahal et al., 2012, Panz et al., 2012, Li, 2010, Leitao-Goncalves et al., 2012, Klapholz et al., 2009, Schotman et al., 2008, Charron et al., 2008, Zheng et al., 2010, Nam et al., 2012, Chen et al., 2011, Harder et al., 2008, Degennaro et al., 2011, Tsuda et al., 2010, Lorbeck et al., 2011, Saini et al., 2011, Sansone and Blumenthal, 2012, Hyun and Hashimoto, 2011, Thackray et al., 2012, Galletti et al., 2009, Muñiz Ortiz et al., 2011, Humphrey et al., 2009, Lee and Fischer, 2012, Micale et al., 2009)
Molecular data
A functional Scer\GAL4[Act5C.PI] (P{Act5C-GAL4}) is reconstituted by FRT-mediated recombination between P{y.FRT.GAL4}52B and P{Act5C.FRT}52B at identical chromosomal locations in trans to each other.
Scer\GAL4[Act5C.PI] (P{Act5C-GAL4}) can be reconstituted by FRT-mediated recombination between P{y.FRT.GAL4}52B and P{Act5C.FRT}52B at identical chromosomal locations in trans to each other.
The Scer\FRT cassette has been excised, allowing expression of Scer\GAL4 sequences under the control of the Act5C promoter.
Phenotypic class
Phenotype manifest in
actin filament & border follicle cell | somatic clone, with Rac1V12.Scer\UAS
adult cuticle & adult abdomen, with Nop60BdsRNA.Sym.Scer\UAS
axon & photoreceptor cell R8 | somatic clone, with AlkEC.Scer\UAS.T:Hsap\MYC
axon & photoreceptor cell R8 | somatic clone, with standsRNA.extra.Scer\UAS, standsRNA.intra.Scer\UAS
cell-cell adherens junction & dorsal mesothoracic disc, with DlScer\UAS.cDa
dorsal mesothoracic disc & filamentous actin | somatic clone, with Nint.SH.Scer\UAS
dorsal mesothoracic disc & peripodial epithelium & prepupa, with pucE69, pucScer\UAS.cMa
dorsal mesothoracic disc & peripodial epithelium & prepupa, with pucScer\UAS.cMa
dorsal mesothoracic disc & peripodial stalk & prepupa, with pucE69, pucScer\UAS.cMa
dorsal mesothoracic disc & peripodial stalk & prepupa, with pucScer\UAS.cMa
filamentous actin & dorsal mesothoracic disc, with DlScer\UAS.cDa
filamentous actin & embryonic/first instar larval cuticle | ectopic | somatic clone, with ovoScer\UAS.cPa
follicle cell & actin filament | somatic clone, with Pvrλ.Scer\UAS.T:Hsap\MYC
leg & adult cuticle | somatic clone, with drmScer\UAS.cGa
leg & adult cuticle | somatic clone, with oddScer\UAS.cHa
leg & trichome | somatic clone, with esgScer\UAS.cFa
leg & trichome | somatic clone, with hthScer\UAS.cPa
medulla cortex & glial cell | somatic clone, with gcm2Scer\UAS.cCa
medulla cortex & glial cell | somatic clone, with gcmScer\UAS.cJa
mesothoracic tergum & sensory organ cell | ectopic, with DlScer\UAS.cJa
microchaeta & mesothoracic tergum | somatic clone, with AmunScer\UAS.T:Disc\RFP-mRFP
neuroblast | supernumerary & larval brain | somatic clone, with NICN.Scer\UAS
S2 cell-line & filamentous actin, with ik2DN.Scer\UAS
scutum & macrochaeta, with tkvQ199D.Scer\UAS.cTa
wing & sensillum campaniformium | supernumerary | somatic clone, with gcmScer\UAS.cvdBa
Other information
Allele w+mC
Reference(s) (Pirrotta, 1988, Ito et al., 1997, Gronke et al., 2005)
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
hide Expression Data
Reporter Expression
distribution deduced from reporter (Gal4 UAS)
Stage
Tissue/Position (including subcellular localization)
Reference
Additional Information
Statement
Reference
Designed for use in mosaic analyses; used to drive gene of interest in Scer\FLP1-generated clones.
Transiently generated during mosaic analyses; ubiquitous expression throughout region of the generated clone, but not in rest of body (cell autonomous).
Marker for
Reflects expression of
hide Progenitors & Descendants
progenitor(s)
descendant(s)
hide Comments
construct_comment: Contains a single FRT site.
hide Stocks Listed in FlyBase ( 7 )
Bloomington
Kyoto
hide External Crossreferences & Linkouts
Other Crossreferences
Linkouts
hide Synonyms & Secondary IDs
Reported As
Symbol Synonym
Act-5c
Act5C::Gal4
Act5C>y+>gal4
Act5Cflip-outGal4
Act5C Gal4
act5C GAL4
Act5CGAL4
Act5cGal4
act5C-gal4
Act5c-Gal4
Act5C-GAL4(II)
Act>>GAL4
act > Gal4
act>y+>gal-4
actGAL4
actin5CGal4
actin5C>
Actin5c >> Gal4
Actin 5C-GAL4
actin 5C-Gal4
Actin-5C-GAL4
actin5CGAL4
Actin5cGAL4
Actin5C-gal4
Actin5-Gal4
actin::GAL4
actin>>Gal4
actin-Gal-4
Actin Gal4
Actin-GAL4}
Ay-Gal4(25)
Gal4-Act5c
Gal4-Act5C
P[w+,Act5C-GAL4]
P{Act5c-Gal4}
P{Act5CGAL4}
P{Act5C - GAL4}
P{Act5C-GAL4}25F01
P{Act5C-GAL4}25FO1
P{Act5CGAL, w+}
P{GAL4.Act5C.I}
P{GAL4-Act5C(-FRT)}
P{w+mC = Act5C-GAL4}
Pactin-Gal4
P actin-Gal4
Pactin-GAL4
Secondary FlyBase IDs
hide References ( 379 )
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hide Recent research papers ( 51 )
Birner-Gruenberger et al., 2012, Insect Biochem. Mol. Biol. 42(3): 220--229
Functional fat body proteomics and gene targeting reveal in vivo functions of Drosophila melanogaster α-Esterase-7. [FBrf0217320]
Daenzer et al., 2012, PLoS Genet. 8(5): e1002721
UDP-Galactose 4'-Epimerase Activities toward UDP-Gal and UDP-GalNAc Play Different Roles in the Development of Drosophila melanogaster. [FBrf0218493]
Dahal et al., 2012, Development 139(19): 3653--3664
An inwardly rectifying K+ channel is required for patterning. [FBrf0219361]
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]
Herz et al., 2012, Mol. Cell. Biol. 32(9): 1683--1693
Polycomb repressive complex 2-dependent and -independent functions of jarid2 in transcriptional regulation in Drosophila. [FBrf0218000]
Ji and Tulin, 2012, Nat. Commun. 3: 760
Poly(ADP-ribose) controls DE-cadherin-dependent stem cell maintenance and oocyte localization. [FBrf0217856]
Lang et al., 2012, PLoS Genet. 8(4): e1002683
Genetic inhibition of solute-linked carrier 39 family transporter 1 ameliorates aβ pathology in a Drosophila model of Alzheimer's disease. [FBrf0218220]
Lawlor et al., 2012, PLoS ONE 7(6): e38516
Ubiquitous Expression of CUG or CAG Trinucleotide Repeat RNA Causes Common Morphological Defects in a Drosophila Model of RNA-Mediated Pathology. [FBrf0218612]
Lee and Fischer, 2012, PLoS ONE 7(9): e46357
Drosophila Tel2 Is Expressed as a Translational Fusion with EpsinR and Is a Regulator of Wingless Signaling. [FBrf0219532]
Leitao-Goncalves et al., 2012, Amino Acids 42(5): 1661--1668
Drosophila as a platform to predict the pathogenicity of novel aminoacyl-tRNA synthetase mutations in CMT. [FBrf0218080]
Luo et al., 2012, Cell. Molec. Life Sci. 69(3): 471--484
Insulin-producing cells in the brain of adult Drosophila are regulated by the serotonin 5-HT(1A) receptor. [FBrf0217219]
McKinley et al., 2012, J. Cell Sci. 125(5): 1177--1190
Assembly of Bazooka polarity landmarks through a multifaceted membrane-association mechanism. [FBrf0217991]
Nam et al., 2012, EMBO J. 31(5): 1253--1265
Genetic evidence of a redox-dependent systemic wound response via Hayan Protease-Phenoloxidase system in Drosophila. [FBrf0217593]
Panz et al., 2012, Biol. Cell 104(9): 553--568
A novel role for the non-catalytic intracellular domain of Neprilysins in muscle physiology. [FBrf0219388]
Saleem et al., 2012, Mech. Dev. 129(5-8): 177--191
Drosophila melanogaster p24 trafficking proteins have vital roles in development and reproduction. [FBrf0219054]
Sansone and Blumenthal, 2012, Insect Biochem. Mol. Biol. 42(9): 690--698
Developmental expression of drop-dead is required for early adult survival and normal body mass in Drosophila melanogaster. [FBrf0219134]
Shah et al., 2012, Pest Manag. Sci. 68(1): 38--48
Insecticide detoxification indicator strains as tools for enhancing chemical discovery screens. [FBrf0217053]
Terhzaz et al., 2012, PLoS ONE 7(1): e29897
Mechanism and Function of Drosophila capa GPCR: A Desiccation Stress-Responsive Receptor with Functional Homology to Human NeuromedinU Receptor. [FBrf0217221]
Thackray et al., 2012, Biochem. J. 444(3): 487--495
Ovine PrP transgenic Drosophila show reduced locomotor activity and decreased survival. [FBrf0218433]
Tsigkari et al., 2012, PLoS ONE 7(5): e36702
14-3-3ε is required for germ cell migration in Drosophila. [FBrf0218503]
Verma et al., 2012, genesis 50(2): 86--101
DNApol‐ϵ gene is indispensable for the survival and growth of Drosophila melanogaster. [FBrf0217413]
Wen et al., 2012, Dev. Dyn. 241(3): 455--464
The biological function of the WD40 repeat-containing protein p55/Caf1 in Drosophila. [FBrf0217472]
Xu et al., 2012, PLoS Genet. 8(1): e1002478
Insulin Signaling Regulates Fatty Acid Catabolism at the Level of CoA Activation. [FBrf0217254]
Brideau and Barbash, 2011, BMC Evol. Biol. 11: 57
Functional conservation of the Drosophila hybrid incompatibility gene Lhr. [FBrf0213263]
Chen et al., 2011, J. Biol. Chem. 286(11): 9020--9030
E2 Ligase dRad6 Regulates DMP53 Turnover in Drosophila. [FBrf0213391]
Cho and Fischer, 2011, Development 138(7): 1349--1359
Ral GTPase promotes asymmetric Notch activation in the Drosophila eye in response to Frizzled/PCP signaling by repressing ligand-independent receptor activation. [FBrf0213208]
Degennaro et al., 2011, Dev. Cell 20(2): 233--243
Peroxiredoxin Stabilization of DE-Cadherin Promotes Primordial Germ Cell Adhesion. [FBrf0212971]
Du et al., 2011, PLoS ONE 6(9): e24168
In Vivo RNAi Screen Reveals Neddylation Genes as Novel Regulators of Hedgehog Signaling. [FBrf0215574]
Harterink et al., 2011, Nat. Cell Biol. 13(8): 914--923
A SNX3-dependent retromer pathway mediates retrograde transport of the Wnt sorting receptor Wntless and is required for Wnt secretion. [FBrf0216275]
Hyun and Hashimoto, 2011, Fly 5(1): 53--57
Physiological effects of manipulating the level of insulin-degrading enzyme in insulin-producing cells of Drosophila. [FBrf0213028]
Inada et al., 2011, PLoS ONE 6(12): e29019
Optical dissection of neural circuits responsible for Drosophila larval locomotion with halorhodopsin. [FBrf0217087]
Isaji et al., 2011, PLoS ONE 6(8): e22755
Myosin VI Regulates Actin Structure Specialization through Conserved Cargo-Binding Domain Sites. [FBrf0214724]
Kawamori and Yamaguchi, 2011, Cell Struct. Funct. 36(1): 103--119
DREF is Critical for Drosophila Bristle Development by Regulating Endoreplication in Shaft Cells. [FBrf0213809]
Keegan et al., 2011, Nucleic Acids Res. 39(16): 7249--7262
Functional conservation in human and Drosophila of Metazoan ADAR2 involved in RNA editing: loss of ADAR1 in insects. [FBrf0215032]
Lorbeck et al., 2011, PLoS ONE 6(4): e18412
Microarray analysis uncovers a role for tip60 in nervous system function and general metabolism. [FBrf0213446]
Marinho et al., 2011, Development 138(2): 349--357
The Drosophila Nol12 homologue viriato is a dMyc target that regulates nucleolar architecture and is required for dMyc-stimulated cell growth. [FBrf0212565]
Meyer et al., 2011, J. Cell Sci. 124(12): 1984--1991
Identification of an animal sucrose transporter. [FBrf0213795]
Muñiz Ortiz et al., 2011, Toxicol. Sci. 121(2): 303--311
A transgenic Drosophila model for arsenic methylation suggests a metabolic rationale for differential dose-dependent toxicity endpoints. [FBrf0213756]
Onorati et al., 2011, PLoS Genet. 7(5): e1002096
The ISWI Chromatin Remodeler Organizes the hsrω ncRNA–Containing Omega Speckle Nuclear Compartments. [FBrf0213856]
Port et al., 2011, EMBO Rep. 12(11): 1144--1152
A genome-wide RNA interference screen uncovers two p24 proteins as regulators of Wingless secretion. [FBrf0216532]
Rauskolb et al., 2011, PLoS Biol. 9(6): e1000624
Zyxin links fat signaling to the hippo pathway. [FBrf0213900]
Reddy and Irvine, 2011, Development 138(23): 5201--5212
Regulation of Drosophila glial cell proliferation by Merlin-Hippo signaling. [FBrf0216584]
Saini et al., 2011, Mol. Cell. Biol. 31(10): 2151--2161
The parkin Mutant Phenotype in the Fly Is Largely Rescued by Metal-Responsive Transcription Factor (MTF-1). [FBrf0213558]
Schwedes et al., 2011, J. Insect Physiol. 57(7): 899--907
Ecdysone receptor expression and activity in adult Drosophila melanogaster. [FBrf0214050]
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]
Stavropoulos and Young, 2011, Neuron 72(6): 964--976
insomniac and Cullin-3 Regulate Sleep and Wakefulness in Drosophila. [FBrf0217043]
Tan et al., 2011, Development 138(11): 2197--2206
Coordinated expression of cell death genes regulates neuroblast apoptosis. [FBrf0213685]
Tue et al., 2011, Gene 473(1): 1--7
NF-Y transcriptionally regulates the Drosophila p53 gene. [FBrf0212943]
Yu et al., 2011, BMC Cell Biol. 12: 9
Targeting the motor regulator Klar to lipid droplets. [FBrf0213230]
Zhang et al., 2011, J. Molec. Cell. Cardiol. 51(3): 381--389
Effects of different small HSPB members on contractile dysfunction and structural changes in a Drosophila melanogaster model for Atrial Fibrillation. [FBrf0214619]
Zhong et al., 2011, PLoS ONE 6(11): e27007
A Splice Isoform of DNedd4, DNedd4-Long, Negatively Regulates Neuromuscular Synaptogenesis and Viability in Drosophila. [FBrf0216790]