A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Allele Scer\GAL4hs.PB

General Information
SymbolScer\GAL4hs.PBSpeciesS. cerevisiae
Nameheat shock construct of BrandFlyBase IDFBal0040484
Feature typealleleAssociated geneScer\GAL4
Allele class
Mutagenin vitro construct - regulatory fusion
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Description
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FB2013_03
Stocks
FB2013_02
Controlled Vocabulary Terms
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hide Nature of the Allele
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
Scer\GAL4 is expressed under the control of a heat shock promoter.
A heat shock promoter drives Scer\GAL4 expression.
Construct: Scer\GAL4 is expressed from an Hsp70 promoter.
Complete Scer\GAL4 coding sequence expressed from an Hsp70 promoter.
Expression of GAL4 driven by an heat inducible promoter.
GAL4 driven by an Hsp70 promoter.
Carried in construct
(Lung et al., 2002, Nagaraj and Banerjee, 2007, Fei et al., 2002, Banerjee et al., 2004, Liu et al., 2007, Liu and Lehmann, 2006, Langevin et al., 2005, Hwang et al., 2002, Chern and Choi, 2002, Huang et al., 2002, Cha et al., 2005, Tettweiler et al., 2005, Gottar et al., 2002, Chanut et al., 2002, Chen et al., 2002, Song and Xie, 2003, Cox et al., 2000, Rybak et al., 2002, Hedengren et al., 1999, Kanuka et al., 2005, Hoffman and Lis, 2000, Adam et al., 2003, Guha and Kornberg, 2005, Lai et al., 2000, Kenyon et al., 2005, Bittinger, 2004, Schober et al., 1999, Bessa and Casares, 2005, Tateno et al., 2000, Chen et al., 2002, Wan et al., 2000, Sang and Ready, 2002, Kanuka et al., 2005, Kleino et al., 2005, Juhasz et al., 2003, Miotto et al., 2006, Stocker et al., 2003, Saucedo et al., 2003, Calvi et al., 1998, Li et al., 2005, Quinn et al., 2001, Kramer et al., 2003, Chavous et al., 2001, Adachi-Yamada et al., 1999, Inoue et al., 2001, Dunne et al., 2002, Kozlova and Thummel, 2002, del Alamo et al., 2002, Couderc et al., 2002, Brown et al., 2003, Chang et al., 2001, Bergmann et al., 2002, Poux et al., 2002, Razzaq et al., 2001, Britton et al., 2002, Audibert et al., 2005, Bataille et al., 2005, Schulz et al., 2001, Lee et al., 2003, Matsuno et al., 2002, Tulin et al., 2006, Dai et al., 2003, Seong et al., 2001, Kondylis et al., 2001, Li and White, 2003, Ishikawa et al., 2005, Dostert et al., 2005, Szuplewski et al., 2003, Wolf et al., 2006, van de Bor et al., 2002, Colombani et al., 2005, Li et al., 1998, Ekengren et al., 2001, Baum and Perrimon, 2001, Kon et al., 2005, Liu et al., 2003, Harden et al., 2002, Raghu et al., 2009, Mandal et al., 2007, Yamashita et al., 2007, Yamashita et al., 2007, Lebestky et al., 2003, Mohan et al., 2007, Merianda et al., 2005, Senger et al., 2006, Park et al., 2004, Choi et al., 2004, Kim et al., 2006, Busygina et al., 2004, Jang et al., 2006, Fuss et al., 2006, Chihara et al., 2003, Seppo et al., 2003, Leulier et al., 2002, Solano et al., 2003, Zraly et al., 2003, Parker et al., 2002, Zheng et al., 2003, Cai et al., 2003, Satterfield et al., 2002, Labrador and Corces, 2003, French et al., 2003, Brand et al., 1993, Bardot et al., 2002, Enerly et al., 2002, Reichhart et al., 2002, Presente et al., 2002, Chan et al., 2002, Takehana et al., 2002, Song et al., 2002, Kuranaga et al., 2002, Mao et al., 2002, Jarman et al., 1993, Rodan et al., 2002, Savarit and Ferveur, 2002, Kiefer et al., 2002, Sen et al., 2004, Miura et al., 2002, Cheng and Shearn, 2004, Robinson et al., 2002, Duvic et al., 2002, Wang et al., 2004, Gu et al., 1995, Taylor et al., 1995, Ogden et al., 2003, Tsai et al., 2004, Armstrong et al., 2002, Acharya et al., 2004, Griffitts et al., 2003, Mason et al., 2002, Bai and Montell, 2002, Yu et al., 2004, Dejardin and Cavalli, 2004, Igaki et al., 2002, Karagiosis and Ready, 2004, Frankfort and Mardon, 2004, Enerly et al., 2003, Song et al., 2004, Kawase et al., 2004, Narbonne et al., 2004, Ikeya et al., 2002, Fuss et al., 2004, Bajpai et al., 2004, Brand et al., 1994, Martin and Baehrecke, 2004, Venkiteswaran and Hasan, 2009, Centanin et al., 2005, Yamamoto and Nakano, 1999, Pai et al., 2006, Broughton et al., 2004, True et al., 2001, Wesley and Saez, 2000, Chen et al., 2004, LeBlanc et al., 1999, Nishimura et al., 2004, Chang et al., 2003, Gobert et al., 2003, Wasser and Chia, 2000, Serano and Rubin, 2003, DeSousa et al., 2003, Yang et al., 2000, Bao and Cagan, 2005, Wittwer et al., 2001, Lee and Baehrecke, 2001, Brogiolo et al., 2001, Kumar and Moses, 2001, Tang et al., 2000, Kraus and Lis, 1994, Frolov et al., 2000, Roman et al., 2000, Noveen et al., 2000, Chang and Ready, 2000, Veraksa et al., 2000, Quinn et al., 2000, Uv et al., 2000, van de Bor et al., 2000, Jarman et al., 1994, Turnage et al., 2000, Ben-Arie et al., 2000, Decoville et al., 2001, Lefai et al., 2000, Ju et al., 2000, Barolo et al., 2000, Bloomington Drosophila Stock Center, 2000.3.11, Huang et al., 2000, Goulding et al., 2000, Steneberg et al., 1999, Cavalli, 1999, Rudolph et al., 1999, Dobens et al., 2000, Nie et al., 1999, Terhzaz et al., 1999, Lyko et al., 1999, Shi et al., 1999, Jarecki et al., 1999, Schaefer et al., 2000, Colussi et al., 2000, Toba et al., 1999, Savarit et al., 1999, Petersen et al., 1999, Hirose et al., 1999, Spencer et al., 1998, Brodu et al., 1999, zur Lage and Jarman, 1999, Kidd et al., 1998, Englund et al., 1999, Knoblich et al., 1999, Bhat et al., 1999, Heifetz et al., 2005, Harden et al., 1999, Kavaler et al., 1999, Macpherson et al., 2005, Huang et al., 1998, Ricos et al., 1999, Larkin et al., 1999, Li et al., 1999, Hayashi and Yamaguchi, 1999, Imam et al., 1999, Satoh et al., 2005, Li et al., 1997, Larsson and Rasmuson-Lestander, 1997, Ralston and Blair, 2005, Satoh et al., 1997, Szakmary et al., 2005, Hukriede et al., 1997, Kopp et al., 1997, Kopp and Duncan, 1997, Rosay et al., 1997, Riese et al., 1997, Zito et al., 1997, Song et al., 2000, Newfeld et al., 1997, Kolonin and Finley, 2000, Burgess et al., 1997, Wang et al., 2004, Vereshchagina et al., 2004, Porsch et al., 2005, Cordero et al., 2004, Tsai et al., 2004, Perazzona et al., 2004, Yao et al., 2006, Srinivasan and Atchison, 2004, Takehana et al., 2004, Adam and Montell, 2004, Brugger et al., 2004, Thomer et al., 2004, Conder et al., 2004, Woodcock and Hughes, 2004, Piccin et al., 2001, Lee et al., 2004, Simmonds et al., 2001, King et al., 2001, Chan et al., 2001, Bhat, 1998, Bacon et al., 1998, Axelrod et al., 1998, Gallet et al., 1998, van de Bor and Giangrande, 2001, Xie and Spradling, 1998, Cho et al., 2001, Khalsa et al., 1998, Roote and Zusman, 1996, Rousset et al., 2001, Lee et al., 1996, Winter et al., 2001, Betz et al., 2001, Tomoyasu et al., 1998, Mozer, 2001, Dobens et al., 2001, Jarman and Ahmed, 1998, Murphy and Montell, 1996, Frolov et al., 2001, Zaffran et al., 1998, Vidal et al., 2001, Forbes et al., 1996, Nakagoshi et al., 1998, Broughton et al., 1996, Ferveur and Savarit, 2000, Bokor and DiNardo, 1996, Brown and Freeman, 2003, Tata and Hartley, 1995, Hediger et al., 2004, McCall and Bender, 1996, Chen and McKearin, 2003, Zink and Paro, 1995, Fietz et al., 1995, Wines et al., 1996, Kozlova and Thummel, 2003, Harrison et al., 1995, Boettner et al., 2003, Hou et al., 1997, Kockel et al., 1997, Fleming et al., 1997, Kunert et al., 2003, Pai et al., 1997, Rose et al., 1997, Lee and Montell, 1997, Cavalli and Paro, 1998, Ferveur et al., 1997, Eresh et al., 1997, Roignant et al., 2003, Lai, 2003, Larkin et al., 1996, Riese et al., 1997, Martin-Blanco et al., 1998, Shen and Mardon, 1997, Kane et al., 1997, Zecca et al., 1996, Brunner et al., 1997, Freeman, 1996, Dokucu et al., 1996, Torok et al., 1997, Chien et al., 1996, Calleja et al., 1996, Howes et al., 1998, Sutherland et al., 1996, Davis et al., 1998, Yang et al., 2003, Seroude et al., 2002, Choi et al., 2011, Shin et al., 2005, Katsuyama et al., 2005, Park et al., 2006, Lu et al., 2006, Walker et al., 2006, Vrailas et al., 2006, Zelhof et al., 2006, Petruk et al., 2006, Kocks et al., 2005, Sanchez-Elsner et al., 2006, Kim et al., 2006, Cha et al., 2003, Jauch et al., 2006, Laviolette et al., 2005, Park et al., 2006, Kent et al., 2006, Senoo-Matsuda et al., 2005, Wesley and Mok, 2003, Tenney et al., 2006, Bainton et al., 2005, Takaesu et al., 2006, Waldhuber et al., 2005, Lestradet et al., 2009, Tie et al., 2009, Papaconstantinou et al., 2005, Avet-Rochex et al., 2005, Gottar et al., 2006, Matova and Anderson, 2006, Brennan et al., 2007, Serpe and O'Connor, 2006, Capelson and Corces, 2005, Das et al., 2006, Meyer and Aberle, 2006, Song et al., 2007, Chung et al., 2007, Sugiyama et al., 2007, Sano et al., 2005, Mueller et al., 2007, Loer et al., 2008, Martin et al., 2005, Goto et al., 2008, Liu and Lehmann, 2008, Garabedian et al., 2011, Liu et al., 2011, Brun et al., 2006, Duan et al., 2011, Menzel et al., 2007, Tsuzuki et al., 2012, Lee et al., 2011, Maillet et al., 2008, Tang et al., 2011, Rawls et al., 2007, Minakhina et al., 2007, Tsichritzis et al., 2007, Tan et al., 2011, Yang et al., 2007, Costantino et al., 2008, Chawla and Sokol, 2012, Troost et al., 2012, Banerjee et al., 2006, Hartl et al., 2008, Cook et al., 2008, Avet-Rochex et al., 2007, Wisotzkey et al., 2003, Nakamura et al., 2008, Mouchel-Vielh et al., 2008, Croker et al., 2007, Deddouche et al., 2008, Lindsay et al., 2008, Rollins et al., 2004, Furukawa et al., 2009, List et al., 2009, Kennerdell and Carthew, 2000, Rodahl et al., 2009, Chang and Neufeld, 2009, Chang and Neufeld, 2009, Johnson et al., 2008, Allen and Spradling, 2008, Guntermann et al., 2009, Jang et al., 2008, Park et al., 2009, Yang et al., 2005, Fang et al., 2009, Lee et al., 2006, Sabin et al., 2009, Sopko et al., 2009, Tombácz et al., 2009, Zanet et al., 2009, Matsuno et al., 2009, Reiter et al., 2006, Aggarwal et al., 2008, Tootle and Spradling, 2008, Parrish et al., 2009, Kalamegham et al., 2007, Fan et al., 2003, Bolduc et al., 2008, Steneberg and Samakovlis, 2001, Lyulcheva et al., 2008, Bauer et al., 2009, Kain et al., 2008, Morris et al., 2006, Scanga et al., 2000, Haghayeghi et al., 2010, Bischoff et al., 2004, Doyle et al., 2008, Wang et al., 2008, Lee et al., 2007, Zhang et al., 2009, Rimkus et al., 2008, Tang et al., 2008, Becker et al., 2010, Shelly et al., 2009, Goto et al., 2010, Usha and Shashidhara, 2010, Taniue et al., 2010, El Chamy et al., 2008, Ayyub et al., 2005, Lehmann et al., 2002, Huang et al., 2010, Chen et al., 2005, Herr et al., 2010, Lee et al., 2007, Liu et al., 2008, Hofmann et al., 2010, Lee et al., 2010, Acevedo et al., 2010, Peralta et al., 2009, Bodai et al., 2007, Mazock et al., 2010, Park et al., 2010, Smolik and Jones, 2007, Sharma et al., 2008, Ryu et al., 2004, Ayyar et al., 2010, Zhou et al., 2010, Han et al., 2004, Kelley et al., 2008, Hahn et al., 2010, Pospisilik et al., 2010, Tikhmyanova et al., 2010, Zinke et al., 2002, Tsuda et al., 2010, O'Keefe et al., 2005, Friggi-Grelin et al., 2003, Giraudo et al., 2010, Kim et al., 2010, Bredendiek et al., 2011, Ferdousy et al., 2011, Alic et al., 2011, Marinho et al., 2011, Wang et al., 2011, Gaumer et al., 2000, Sasai et al., 2007, Ajuria et al., 2011, Wang and Pai, 2011, Rival et al., 2006, Funakoshi et al., 2011, Kim et al., 2008, Kim et al., 2010, Colonques et al., 2011, Kramer et al., 2011, Montagne et al., 2010, Chopra et al., 2011, Usui-Aoki et al., 2005, Ren et al., 2011, Lee et al., 2009, Bao et al., 2008, Jacobsson et al., 2009, Thevenon et al., 2009, Terhzaz et al., 2010, Johnson et al., 2010, Xie et al., 2011, Xie et al., 2010, Papadopoulos et al., 2012, Sem et al., 2002, Bischoff et al., 2006, Texada et al., 2011, Bou Aoun et al., 2011, Csikós et al., 2009, Liu et al., 2012, Qi et al., 2006, Paik et al., 2012, Verghese et al., 2012, Kango-Singh, 2012.10.31, Kotova et al., 2009, Hozumi et al., 2008, Pardi et al., 2011, Botham et al., 2008, Elsaesser et al., 2010, Érdi et al., 2012, Ihry et al., 2012, Uchino et al., 2013, Karim and Moore, 2011, Toba and White, 2008, Osanai-Futahashi et al., 2012, Sansone and Blumenthal, 2012, Yao et al., 2012, Papadopoulos et al., 2010, Papadopoulos et al., 2010, Pascual et al., 2010, Gupta et al., 2008, Gurudatta et al., 2010)
Cytology
hide Phenotypic Data
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hide Phenotype Manifest In
actin filament & egg chamber, with Vps4DN.Scer\UAS.T:Ivir\HA1
antenna & neuron | conditional ts, with EgfrDN.Scer\UAS
antennal segment 1 & olfactory sensory organ | ectopic, with amosScer\UAS.cGa
antennal segment 2 & olfactory sensory organ | ectopic, with amosScer\UAS.cGa
bract | ectopic & adult external prothorax, with phlF20.Scer\UAS
bract | ectopic & arista, with phlF20.Scer\UAS
bract | ectopic & costal vein, with phlF20.Scer\UAS
bract | ectopic & gena, with phlF20.Scer\UAS
bract | ectopic & haltere, with phlF20.Scer\UAS
bract | ectopic & mesothoracic tergum, with phlF20.Scer\UAS
bract | ectopic & wing | dorsal, with phlF20.Scer\UAS
bract | ectopic & wing hinge | dorsal, with phlF20.Scer\UAS
chemosensory sensory organ & wing vein L1 & glial cell, with Nint.SH.Scer\UAS
chemosensory sensory organ & wing vein L3 & glial cell, with Nint.SH.Scer\UAS
chordotonal organ & scutellum | ectopic, with Mmus\Atoh1Scer\UAS.cBa
chordotonal organ & wing hinge | ectopic, with Mmus\Atoh1Scer\UAS.cBa
chordotonal organ & wing vein L3 | ectopic, with Mmus\Atoh1Scer\UAS.cBa
external sensory organ & scutum | ectopic, with Mmus\Atoh1Scer\UAS.cBa
external sensory organ & wing | ectopic, with Mmus\Atoh1Scer\UAS.cBa
glial cell & antennal disc, with aosScer\UAS.cMa
glial cell & antennal disc, with Ras85DN17.Scer\UAS
glial cell | ectopic | conditional ts & antennal disc, with BacA\p35Scer\UAS.cHa
Golgi apparatus & photoreceptor cell, with Rab1N124I.Scer\UAS
head bristle & tormogen cell | conditional ts, with svScer\UAS.cKa
head bristle & trichogen cell | conditional ts, with svScer\UAS.cKa
hindgut & nucleus, with hopScer\UAS.cHa
lamina & neuron, with spis.Scer\UAS
larval salivary gland & nucleus, with eastScer\UAS.cWa
macrochaeta | supernumerary & larva, with BacA\p35Scer\UAS.cHa
mechanosensory sensory organ & wing vein L1 & glial cell, with Nint.SH.Scer\UAS
mechanosensory sensory organ & wing vein L3 & glial cell, with Nint.SH.Scer\UAS
mesothoracic tergum & macrochaeta | supernumerary | conditional ts, with gcmScer\UAS.cBa
microvillus & photoreceptor cell, with Rab1N124I.Scer\UAS
oocyte & pericentriolar material, with DlScer\UAS.cDa
orbital bristle & trichogen cell | conditional ts, with svScer\UAS.cKa
photoreceptor cell & neuron, with par-1Scer\UAS.cSa
polytene chromosome & larval salivary gland, with Cap-H2EY09979
polytene chromosome & larval salivary gland, with Cap-H2Scer\UAS.P\T.T:Disc\RFP-mCherry
polytene chromosome & larval salivary gland | conditional - heat sensitive, with Cap-H2EY09979
rhabdomere & cytoskeleton | apical, with MoeK.T559D.Scer\UAS.T:Hsap\MYC
rhabdomere & plasma membrane | apical, with MoeK.T559D.Scer\UAS.T:Hsap\MYC
rough endoplasmic reticulum & photoreceptor cell, with Rab1N124I.Scer\UAS
scutum & macrochaeta, with putScer\UAS.cTa
scutum & macrochaeta, with tkvQ199D.Scer\UAS.cTa
scutum & macrochaeta & tormogen cell | conditional ts, with svScer\UAS.cKa
scutum & macrochaeta & trichogen cell | conditional ts, with svScer\UAS.cKa
scutum & microchaeta & trichogen cell | conditional ts, with svScer\UAS.cKa
sensory mother cell & dorsal mesothoracic disc, with tkvQ199D.Scer\UAS.cTa
tergite & macrochaeta, with ptcScer\UAS.cJa
wing & external sensory organ, with ato::scb.ato.Scer\UAS
wing & external sensory organ, with ato::scbHLH.sc.Scer\UAS
wing & external sensory organ, with ato::scHLH.ato.Scer\UAS
wing & external sensory organ, with ato::scHLH.sc.Scer\UAS
wing & external sensory organ, with scin.Scer\UAS
wing & external sensory organ, with scm14.Scer\UAS
wing & external sensory organ, with scm15.Scer\UAS
wing & external sensory organ, with scm24.Scer\UAS
wing & external sensory organ, with scm25.Scer\UAS
wing & external sensory organ, with scm34.Scer\UAS
hide Detailed Description
Statement
Reference
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Linkouts
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hide Phenotypic Class
hideEnhanced by
Statement
Reference
LIMK1D522A.Scer\UAS, Scer\GAL4hs.PB has visible phenotype, enhanceable by Sb[+]/Sb70
LIMK1D522A.Scer\UAS, Scer\GAL4hs.PB has visible phenotype, enhanceable by Sb63b/Sb[+]
Scer\GAL4hs.PB, towScer\UAS.cCa has visible phenotype, enhanceable by Rho172O/Rho1[+]
Scer\GAL4hs.PB, towScer\UAS.cCa has visible phenotype, enhanceable by rok[+]/rok2
Scer\GAL4hs.PB, towScer\UAS.cCa has visible phenotype, enhanceable by sqhAX3/sqh[+]
Scer\GAL4hs.PB, towScer\UAS.cCa has visible phenotype, enhanceable by zip[+]/zip1
Scer\GAL4hs.PB, towScer\UAS.cCa has visible phenotype, enhanceable by zipIIX62/zip[+]
hideNOT Enhanced by
Statement
Reference
hideSuppressed by
Statement
Reference
Scer\GAL4hs.PB, towScer\UAS.cCa has visible phenotype, suppressible | partially by ck[+]/ck13
hideNOT suppressed by
Statement
Reference
hideEnhancer of
Statement
Reference
hideNOT Enhancer of
Statement
Reference
hideSuppressor of
Statement
Reference
hideNOT Suppressor of
Statement
Reference
hide Phenotype Manifest In
hideEnhanced by
Statement
Reference
LIMK1D522A.Scer\UAS, Scer\GAL4hs.PB has leg phenotype, enhanceable by Sb[+]/Sb70
LIMK1D522A.Scer\UAS, Scer\GAL4hs.PB has leg phenotype, enhanceable by Sb63b/Sb[+]
hideNOT Enhanced by
Statement
Reference
hideSuppressed by
Statement
Reference
Cap-H2EY09979, Scer\GAL4hs.PB has polytene chromosome & larval salivary gland phenotype, suppressible by Cap-D3EY00456/Df(2L)Exel7023
hideNOT suppressed by
Statement
Reference
hideEnhancer of
Statement
Reference
hideNOT Enhancer of
Statement
Reference
hideSuppressor of
Statement
Reference
MarfGD11094/Scer\GAL4hs.PB is a suppressor of wing phenotype of Pink1B9
parkScer\UAS.T:Hsap\MYC/Scer\GAL4hs.PB is a suppressor | partially of dopamine neuron & adult brain phenotype of Pink1B9
Scer\GAL4hs.PB/Rac1V12.C.Scer\UAS is a suppressor of rhabdomere & actin filament phenotype of ninaE17
hideNOT Suppressor of
Statement
Reference
Pink1Scer\UAS.T:Ivir\HA1/Scer\GAL4hs.PB is a non-suppressor of mitochondrion & skeletal muscle of thorax phenotype of park1
Pink1Scer\UAS.T:Ivir\HA1/Scer\GAL4hs.PB is a non-suppressor of myofibril & skeletal muscle of thorax phenotype of park1
hide Additional Comments
hide Genetic Interactions
Statement
Reference
hide Xenogenetic Interactions
Statement
Reference
hide Complementation & Rescue Data
Rescues
Partially rescues
Fails to rescue
Comments
hide Stocks ( 17 )
Bloomington
Kyoto
hide Notes on Origin
Discoverer
hide Comments
Carried in a plasmid and transfected into S2 cells as a driver construct.
Carried in a plasmid and transfected into S2 cells to drive expression of co-transfected constructs.
hide External Crossreferences & Linkouts
Other Crossreferences
Linkouts
hide Synonyms & Secondary IDs ( 11 )
Reported As
Symbol Synonym
GAL4hs.PB
 
GAL4hs.PF
 
heat-shock-Gal4
Scer\GAL4hs.PB
 
Name Synonym
heat shock construct of Brand
Secondary FlyBase IDs
  • FBal0048792
hide References ( 552 )
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hide Recent research papers ( 37 )
Uchino et al., 2013, Dev. Biol. 373(1): 216--227
Loss of Drosophila A-type lamin C initially causes tendon abnormality including disintegration of cytoskeleton and nuclear lamina in muscular defects. [FBrf0220052]
Chawla and Sokol, 2012, Development 139(10): 1788--1797
Hormonal activation of let-7-C microRNAs via EcR is required for adult Drosophila melanogaster morphology and function. [FBrf0218077]
Ihry et al., 2012, PLoS Genet. 8(11): e1003085
Translational Control by the DEAD Box RNA Helicase belle Regulates Ecdysone-Triggered Transcriptional Cascades. [FBrf0220149]
Liu et al., 2012, PLoS ONE 7(8): e42725
Drosophila EYA Regulates the Immune Response against DNA through an Evolutionarily Conserved Threonine Phosphatase Motif. [FBrf0219297]
Osanai-Futahashi et al., 2012, Nat. Commun. 3: 1295
A visible dominant marker for insect transgenesis. [FBrf0220343]
Paik et al., 2012, Mech. Ageing Dev. 133(5): 234--245
Misexpression screen delineates novel genes controlling Drosophila lifespan. [FBrf0218389]
Papadopoulos et al., 2012, Dev. Biol. 367(1): 78--89
Dimer formation via the homeodomain is required for function and specificity of Sex combs reduced in Drosophila. [FBrf0218494]
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]
Troost et al., 2012, J. Cell Sci. 125(3): 763--776
The tumour suppressor Lethal (2) giant discs is required for the function of the ESCRT-III component Shrub/CHMP4. [FBrf0217584]
Tsuzuki et al., 2012, Sci. Rep. 2: 210
Drosophila growth-blocking peptide-like factor mediates acute immune reactions during infectious and non-infectious stress. [FBrf0217467]
Verghese et al., 2012, Cell Death Differ. 19(10): 1664--1676
Hippo signalling controls Dronc activity to regulate organ size in Drosophila. [FBrf0219371]
Yao et al., 2012, Chromosoma 121(2): 209--220
The chromodomain-containing NH(2)-terminus of Chromator interacts with histone H1 and is required for correct targeting to chromatin. [FBrf0218885]
Érdi et al., 2012, Autophagy 8(7): 1124--1135
Loss of the starvation-induced gene Rack1 leads to glycogen deficiency and impaired autophagic responses in Drosophila. [FBrf0219844]
Ajuria et al., 2011, Development 138(5): 915--924
Capicua DNA-binding sites are general response elements for RTK signaling in Drosophila. [FBrf0212975]
Alic et al., 2011, Aging Cell 10(1): 137--147
Lifespan extension by increased expression of the Drosophila homologue of the IGFBP7 tumour suppressor. [FBrf0212768]
Bou Aoun et al., 2011, J. Innate Immun. 3(1): 52--64
Analysis of thioester-containing proteins during the innate immune response of Drosophila melanogaster. [FBrf0212631]
Bredendiek et al., 2011, Chem. Senses 36(1): 69--81
Go α is involved in sugar perception in Drosophila. [FBrf0212580]
Choi et al., 2011, J. Biol. Chem. 286(4): 2658--2664
Drosophila Salt-inducible Kinase (SIK) Regulates Starvation Resistance through cAMP-response Element-binding Protein (CREB)-regulated Transcription Coactivator (CRTC). [FBrf0212827]
Chopra et al., 2011, Mol. Cell 42(6): 837--844
The Polycomb Group Mutant esc Leads to Augmented Levels of Paused Pol II in the Drosophila Embryo. [FBrf0214009]
Colonques et al., 2011, PLoS ONE 6(4): e19342
A Transient Expression of Prospero Promotes Cell Cycle Exit of Drosophila Postembryonic Neurons through the Regulation of Dacapo. [FBrf0213608]
Duan et al., 2011, EMBO J. 30(15): 3120--3133
Insensitive is a corepressor for Suppressor of Hairless and regulates Notch signalling during neural development. [FBrf0214638]
Ferdousy et al., 2011, Neurobiol. Disease 41(3): 669--677
Drosophila Ube3a regulates monoamine synthesis by increasing GTP cyclohydrolase I activity via a non-ubiquitin ligase mechanism. [FBrf0212886]
Funakoshi et al., 2011, Biochem. Biophys. Res. Commun. 405(4): 667--672
A gain-of-function screen identifies wdb and lkb1 as lifespan-extending genes in Drosophila. [FBrf0213115]
Garabedian et al., 2011, PLoS ONE 6(10): e25945
Generating a Knockdown Transgene against Drosophila Heterochromatic Tim17b Gene Encoding Mitochondrial Translocase Subunit. [FBrf0216408]
Karim and Moore, 2011, J. Neurosci. 31(47): 17017--17027
Convergent local identity and topographic projection of sensory neurons. [FBrf0216770]
Kramer et al., 2011, PLoS Biol. 9(1): e1000569
Epigenetic Regulation of Learning and Memory by Drosophila EHMT/G9a. [FBrf0212836]
Lee et al., 2011, Cell Struct. Funct. 36(2): 197--208
Regulation of Intestinal Stem Cell Proliferation by Human Methyl-CpG-binding Protein-2 in Drosophila. [FBrf0216745]
Liu et al., 2011, Curr. Biol. 21(22): 1888--1893
The Exoribonuclease Nibbler Controls 3' End Processing of MicroRNAs in Drosophila. [FBrf0216782]
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]
Pardi et al., 2011, Acta biol. hung. 62(4): 397--412
In vivo effects of abolishing the single canonical sumoylation site in the C-terminal region of Drosophila p53. [FBrf0216737]
Ren et al., 2011, Hum. Mol. Genet. 20(17): 3424--3436
A Drosophila model of the neurodegenerative disease SCA17 reveals a role of RBP-J/Su(H) in modulating the pathological outcome. [FBrf0214639]
Tan et al., 2011, Biochem. Biophys. Res. Commun. 416(1-2): 18--23
Suppression of Nrdp1 toxicity by Parkin in Drosophila models. [FBrf0216900]
Tang et al., 2011, EMBO J. 30(4): 636--651
Atg1-mediated myosin II activation regulates autophagosome formation during starvation-induced autophagy. [FBrf0213047]
Texada et al., 2011, Exp. Cell Res. 317(4): 474--487
Tropomyosin is an interaction partner of the Drosophila coiled coil protein Yuri Gagarin. [FBrf0212786]
Wang and Pai, 2011, PLoS ONE 6(2): e17097
D-Cbl Binding to Drk Leads to Dose-Dependent Down-Regulation of EGFR Signaling and Increases Receptor-Ligand Endocytosis. [FBrf0213073]
Wang et al., 2011, Dev. Biol. 350(2): 414--428
Notch signaling regulates neuroepithelial stem cell maintenance and neuroblast formation in Drosophila optic lobe development. [FBrf0212909]
Xie et al., 2011, Insect Biochem. Mol. Biol. 41(3): 167--177
RNAi knockdown of dRNaseZ, the Drosophila homolog of ELAC2, impairs growth of mitotic and endoreplicating tissues. [FBrf0213094]
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