A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Allele Scer\GAL4twi.PG

General Information
SymbolScer\GAL4twi.PGSpeciesS. cerevisiae
Nametwist promoter construct of GreigFlyBase IDFBal0040491
Feature typealleleAssociated geneScer\GAL4
Allele class
Mutagenin vitro construct - regulatory fusion
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Description
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FB2013_03
FB2013_02
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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
Construct: twi sequences drive expression of Scer\GAL4.
Scer\GAL4 is expressed under the control of the twi promoter.
Construct: Scer\GAL4 expressed from a 3.1kb fragment including the twi enhancer and promoter.
Carried in construct
(Burnett and Howard, 2003, Guelman et al., 2006, Han and Olson, 2005, Yoshida et al., 2004, Greig and Akam, 1993, Figeac et al., 2010, Van Doren et al., 2003, Johnson Hamlet and Perkins, 2001, Han and Bodmer, 2003, Jung et al., 2005, Knirr et al., 1999, Qian et al., 2005, Dworak et al., 2001, Vining et al., 2005, Klinedinst and Bodmer, 2003, Alvarez et al., 2003, Yoshida et al., 2001, Dossenbach et al., 2001, Zaffran et al., 2001, Brown et al., 2003, Reim et al., 2005, Bataille et al., 2005, Hirota et al., 2002, Weiss et al., 2001, Abrell and Jackle, 2001, Kwon et al., 2005, Deshpande et al., 2001, Lin et al., 2003, Hacker and Perrimon, 1998, Bauer et al., 2002, Lockwood and Bodmer, 2002, Otsuki et al., 2004, Mandal et al., 2007, Han et al., 2002, Halfon et al., 2002, Swan et al., 2004, Waltzer et al., 2002, Englund et al., 2002, Lovato et al., 2002, Gu et al., 2004, Waltzer et al., 2003, Ponzielli et al., 2002, Stathopoulos et al., 2004, Stute et al., 2004, Lo et al., 2002, Dunin-Borkowski and Brown, 1995, Zervas et al., 2001, Halfon et al., 2000, Starz-Gaiano et al., 2001, Hayes et al., 2001, Martin-Bermudo and Brown, 2000, Seher and Leptin, 2000, Yang et al., 2000, Wolf and Schuh, 2000, Bruckner et al., 2004, Zaffran and Frasch, 2000, Martin-Bermudo, 2000, Andrews et al., 2002, Martin-Bermudo et al., 1999, Lear et al., 1999, Lin et al., 1999, Emmons et al., 1999, Fuss and Hoch, 1998, Su et al., 1999, Michelson et al., 1998, Misquitta and Paterson, 1999, Capovilla and Botas, 1998, Yarnitzky et al., 1998, Wilson et al., 2005, Imam et al., 1999, Qian et al., 2005, Lee and Frasch, 2000, Han et al., 2004, Mandal et al., 2004, Smallhorn et al., 2004, Milchanowski et al., 2004, Schroter et al., 2004, Hanyu-Nakamura et al., 2004, Perrin et al., 2004, Boube et al., 2001, Buff et al., 1998, Carmena et al., 1998, Miller et al., 2001, Akiyama-Oda et al., 1998, Capovilla et al., 2001, Martin-Bermudo et al., 1998, Lu et al., 1998, Greig and Akam, 1995, Carmena et al., 1995, Park et al., 1998, Cheng et al., 1998, Bilder and Scott, 1998, Li et al., 2003, Bradley et al., 2003, Park et al., 1998, Michelson et al., 1998, Yin and Frasch, 1998, Ward et al., 1998, Martin-Bermudo et al., 1997, Paululat et al., 1997, Beiman et al., 1996, Yaich et al., 1998, Azpiazu et al., 1996, Gisselbrecht et al., 1996, Martin-Bermudo and Brown, 1996, Carmena et al., 1998, Chen et al., 2003, Hirota et al., 2002, Clark et al., 2006, Krause et al., 2006, Liu et al., 2006, Stultz et al., 2006, Swan et al., 2006, Swan et al., 2006, Akasaka et al., 2006, Akasaka et al., 2006, Estrada et al., 2006, Bazigou et al., 2007, Bazigou et al., 2007, Han et al., 2006, Le Bras and Van Doren, 2006, Kim et al., 2007, Qian and Bodmer, 2009, Cerrato et al., 2006, Bruckner et al., 2004, Venkei et al., 2006, Liu et al., 2006, Renault et al., 2004, Fluegel et al., 2006, Balagopalan et al., 2006, Blanke and Jackle, 2006, Zhu et al., 2012, Sens et al., 2010, Leatherbarrow and Halfon, 2009, Tzortzopoulos and Skoulakis, 2007, Albrecht et al., 2006, Estrada et al., 2007, Miller et al., 2009, Parrish et al., 2009, Babaoglan et al., 2009, Morris et al., 2006, Arndt et al., 2010, Villányi et al., 2008, Schafer et al., 2007, Qian et al., 2008, Guichard et al., 2006, Eriksson et al., 2010, Reed et al., 2010, Okegbe and DiNardo, 2011, Ferris et al., 2006, Jin et al., 2011, Chavoshi et al., 2010, Renault et al., 2010, Xie et al., 2010, Deng et al., 2010, Dottermusch-Heidel et al., 2012, Saini et al., 2010, Enjolras et al., 2012, Reim et al., 2012, Ferjoux et al., 2007, Haralalka et al., 2011, Ahmad et al., 2012, Mathew et al., 2011, Duan et al., 2012)
Cytology
hide Phenotypic Data
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hide Phenotype Manifest In
embryonic/larval pericardial cell & embryonic myoblast, with Scer\GAL4how-24B, enScer\UAS.cGa
fusion competent cell & visceral mesoderm, with jebScer\UAS.cWa
muscle founder cell & visceral mesoderm, with AlkScer\UAS.cLa
muscle founder cell & visceral mesoderm, with jebScer\UAS.cWa
hide Detailed Description
Statement
Reference
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Linkouts
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hideSuppressed by
Statement
Reference
hideSuppressor of
Statement
Reference
Hsap\SOD1Scer\UAS.cWa/Scer\GAL4twi.PG is a suppressor of long lived | recessive | chemical conditional phenotype of park25
Hsap\SOD1Scer\UAS.cWa/Scer\GAL4twi.PG is a suppressor of short lived | chemical conditional phenotype of park25
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hideEnhanced by
Statement
Reference
hideNOT Enhanced by
Statement
Reference
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Statement
Reference
hideNOT suppressed by
Statement
Reference
hideEnhancer of
Statement
Reference
hideNOT Enhancer of
Statement
Reference
hideSuppressor of
Statement
Reference
hideNOT Suppressor of
Statement
Reference
Scer\GAL4twi.PG/slp1Scer\UAS.cSa is a non-suppressor of embryonic/larval dorsal vessel & embryonic myoblast phenotype of wgl-17
Scer\GAL4twi.PG/slp1Scer\UAS.cSa is a non-suppressor of embryonic/larval somatic muscle & embryonic myoblast | dorsal phenotype of wgl-17
Scer\GAL4twi.PG/wgScer\UAS.cAa is a non-suppressor of embryonic/larval dorsal vessel & embryonic myoblast phenotype of slp1Δ34B, slp2Δ34B
Scer\GAL4twi.PG/wgScer\UAS.cAa is a non-suppressor of embryonic/larval somatic muscle & embryonic myoblast | dorsal phenotype of slp1Δ34B, slp2Δ34B
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Statement
Reference
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Statement
Reference
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Rescues
Partially rescues
Fails to rescue
Comments
hide Stocks ( 34 )
Bloomington
Kyoto
hide Notes on Origin
Discoverer
hide Comments
Carried on the 'G4.SG30' chromosome, also carries Scer\GAL4how-24B.
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Other Crossreferences
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hide Synonyms & Secondary IDs ( 4 )
Reported As
Symbol Synonym
GAL4twi.PG
 
Scer\GAL4twi.PBc
 
Scer\GAL4twi.PG
 
Name Synonym
twist promoter construct of Greig
 
Secondary FlyBase IDs
  • FBal0119390
hide References ( 170 )
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hide Recent research papers ( 10 )
Ahmad et al., 2012, Dev. Cell 23(1): 97--111
Two forkhead transcription factors regulate the division of cardiac progenitor cells by a polo-dependent pathway. [FBrf0218973]
Dottermusch-Heidel et al., 2012, Dev. Biol. 368(1): 18--27
The Arf-GEF Schizo/Loner regulates N-cadherin to induce fusion competence of Drosophila myoblasts. [FBrf0218661]
Duan et al., 2012, J. Cell Biol. 199(1): 169--185
Group I PAKs function downstream of Rac to promote podosome invasion during myoblast fusion in vivo. [FBrf0219579]
Enjolras et al., 2012, J. Cell Biol. 197(2): 313--325
Drosophila chibby is required for basal body formation and ciliogenesis but not for Wg signaling. [FBrf0218054]
Reim et al., 2012, Dev. Biol. 368(1): 28--43
The FGF8-related signals Pyramus and Thisbe promote pathfinding, substrate adhesion, and survival of migrating longitudinal gut muscle founder cells. [FBrf0218673]
Zhu et al., 2012, Development 139(8): 1457--1466
Differential regulation of mesodermal gene expression by Drosophila cell type-specific Forkhead transcription factors. [FBrf0217779]
Haralalka et al., 2011, Development 138(8): 1551--1562
Asymmetric Mbc, active Rac1 and F-actin foci in the fusion-competent myoblasts during myoblast fusion in Drosophila. [FBrf0213340]
Jin et al., 2011, Dev. Cell 20(5): 623--638
Competition between Blown Fuse and WASP for WIP Binding Regulates the Dynamics of WASP-Dependent Actin Polymerization In Vivo. [FBrf0213682]
Mathew et al., 2011, Mol. Cell. Biol. 31(24): 4978--4993
Role for traf4 in polarizing adherens junctions as a prerequisite for efficient cell shape changes. [FBrf0216703]
Okegbe and DiNardo, 2011, Development 138(7): 1259--1267
The endoderm specifies the mesodermal niche for the germline in Drosophila via Delta-Notch signaling. [FBrf0213233]
hide Recent reviews (0)
All reviews listed in FlyBase were published before 2011