A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Recombinant construct P{ple-GAL4.F}

General Information
Symbol P{ple-GAL4.F} FlyBase ID FBtp0020119
Feature type transgenic_transposon
Size Expression data GAL4 reporter/driver
Associated insertions 1 available
Molecular map
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Description
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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
Description
CV term
Qualifiers & info
Reference
transposon
Uses
CV term
Qualifiers & info
Reference
binary system (regulatory)
Cloning Sites
Location
Restriction sites
Reference
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Sequence (FB)
Associated Sequence Data
DDBJ /
EMBL /
GenBank
DNA sequence
Extent
 
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Total Size
Left end
Right end
Segments
Number
Orientation
Symbol
Reference
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CV term
Qualifiers & info
Reference
reporter
selectable
hide Component Alleles
Allele Scer\GAL4ple.PF
Reference(s) (Zhang et al., 2007, Liu et al., 2007, Menzies et al., 2005, Andretic et al., 2005, Friggi-Grelin et al., 2003, Lee et al., 2008, Riemensperger et al., 2005, Yang et al., 2005, Sykes and Condron, 2005, Whitworth et al., 2005, Auluck et al., 2005, Yang, 2005, Park et al., 2006, Schwaerzel et al., 2003, Lee et al., 2008, Lima and Miesenbock, 2005, Park et al., 2006, Yuan et al., 2006, Wheeler et al., 2006, Schroll et al., 2006, Yang et al., 2008, Ganguly-Fitzgerald et al., 2006, Melcher and Pankratz, 2005, Cooper et al., 2006, Muñoz-Soriano and Paricio, 2007, Stavropoulos and Young, 2011, Lavara-Culebras and Paricio, 2007, Ishida et al., 2012, Wang et al., 2011, Chen et al., 2012, Kim et al., 2012, Gonzalo-Gomez et al., 2012, Draper et al., 2007, Imai et al., 2008, Kaplan et al., 2008, Gruenewald et al., 2009, Palgi et al., 2009, Park et al., 2009, Corl et al., 2009, Yang et al., 2008, Yang et al., 2006, Al-Anzi et al., 2009, Honjo and Furukubo-Tokunaga, 2009, Sakai et al., 2009, Gao et al., 2008, Sitaraman et al., 2008, Vömel and Wegener, 2008, Wu et al., 2010, Venderova et al., 2009, Tanaka et al., 2008, Lee et al., 2007, Alekseyenko et al., 2010, Nässel et al., 2008, Lee et al., 2008, Melicharek et al., 2010, Schroeder et al., 2003, Makos et al., 2010, Kim et al., 2010, de Haro et al., 2010, Yu et al., 2010, Imai et al., 2010, Du et al., 2010, White et al., 2010, Mao and Davis, 2009, Yarali and Gerber, 2010, Chiang et al., 2011, Friggi-Grelin et al., 2003, Riemensperger et al., 2011, Bayersdorfer et al., 2010, Gehrke et al., 2010, Rival et al., 2011, Bang et al., 2011, Giang et al., 2011, Vargas et al., 2011, Lee et al., 2011, Wakabayashi-Ito et al., 2011, Inagaki et al., 2012, Jepson et al., 2011, Claridge-Chang et al., 2009, Aso et al., 2012, Neckameyer and Bhatt, 2012, Jansen et al., 2009, Trinh et al., 2008, Kong et al., 2010, Barone et al., 2011, Freeman et al., 2012, Xiong et al., 2012, Chen et al., 2012, Pauls et al., 2010, Zhang et al., 2007, Pauls et al., 2010, Dierick and Greenspan, 2007, Kallijärvi et al., 2012, Munoz-Soriano et al., 2012, Kaun et al., 2011, Liu et al., 2012, Schneider et al., 2012, Kahsai et al., 2012, Keleman et al., 2012, Duran et al., 2012)
Molecular data
Construct: Regulatory sequences from ple drive expression of Scer\GAL4.
Phenotypic class
Phenotype manifest in
dopaminergic neuron & adult brain, with Sep4Scer\UAS.cMa
mitochondrion & dopaminergic neuron, with MarfScer\UAS.T:Zzzz\FLAG
mitochondrion & dopaminergic neuron, with opa1-likeScer\UAS.T:Zzzz\FLAG
mitochondrion & dorso-lateral dopaminergic neuron, with parkScer\UAS.T:Ivir\HA1
mitochondrion & dorso-lateral dopaminergic neuron, with Pink1dsRNA.Scer\UAS
mitochondrion & dorso-lateral dopaminergic neuron, with Pink1Scer\UAS.cYa
Other information
Allele w+mC
Reference(s) (Friggi-Grelin et al., 2003)
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
Comment:medium expression
Comment:faint expression
Additional Information
Statement
Reference
Scer\GAL4[ple.PF] generally labels all dopaminergic neurons.
Scer\GAL4[ple.PF] drives expression in the dopaminergic PPL1 neurons (includes MB-MP1, MB-V1 and MB-MV1 neurons), PPL2ab, in 118 PAM neurons per hemisphere (includes MB-M3 neurons), in PPM3, in 1 PPM1 neuron per hemisphere, in PPM2, PPL2c, VUM1 and VUM2 neurons. Expression of Scer\GAL4[ple.PF] is also detected in dopaminergic T1, SVP1, D1 and SP1 neurons.
Scer\GAL4[ple.PF] is expressed in approximately 12 PPL1, 11 PPL2, 8 PPM1/2, 7 PPM3 and 5 PAL dopaminergic neurons, but is not expressed well in the PAM cluster. PAL neurons are seen to project across the midline. Neurons of the PPM1/2 cluster are seen to project ventrally. PPL1 cluster neurons are seen to project medially and dorsally towards the mushroom body, and the PPM3 neurons are observed to project towards the central complex.
Approximately 127 Scer\GAL4[ple.PF] expressing cells can be identified in the adult protocerebrum. Scer\GAL4[ple.PF] is highly expressed in neurons that terminate in the vertical lobes of the mushroom body and in the lateral part of the mushroom body horizontal lobes. There are also a few fibers wrapped around the distal tip of the mushroom body horizontal lobes.
Scer\GAL4[ple.PF] drives expression in the dopaminergic cluster PAL, PPL1, PPL2ab, PPM1, 10 neurons of the PPM2 cluster, 8 neurons of the PPM3 cluster and 13 neurons of the PAM cluster.
Marker for
dopaminergic neuron
Reflects expression of
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progenitor(s)
descendant(s)
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hide Stocks Listed in FlyBase ( 1 )
Bloomington
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Other Crossreferences
Linkouts
hide Synonyms & Secondary IDs
Reported As
Symbol Synonym
P{ple-GAL4.F}
Pple(TH)-Gal4
PTH-GAL4
ple-Gal4
TH1-Gal4
Th-Gal4
tyrosine hydroxylase (TH)-Gal4
Tyrosine hydroxylase-GAL4
Secondary FlyBase IDs
hide References ( 100 )
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hide Recent research papers ( 29 )
Aso et al., 2012, PLoS Genet. 8(7): e1002768
Three dopamine pathways induce aversive odor memories with different stability. [FBrf0218860]
Chen et al., 2012, Science 335(6069): 678--685
Visualizing long-term memory formation in two neurons of the Drosophila brain. [FBrf0217453]
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]
Duran et al., 2012, EMBO Mol. Med. 4(8): 719--729
Deleterious effects of neuronal accumulation of glycogen in flies and mice. [FBrf0219126]
Freeman et al., 2012, Curr. Biol. 22(12): 1142--1148
Sleep fragmentation and motor restlessness in a Drosophila model of restless legs syndrome. [FBrf0218705]
Gonzalo-Gomez et al., 2012, PLoS ONE 7(5): e36477
Ih current is necessary to maintain normal dopamine fluctuations and sleep consolidation in Drosophila. [FBrf0218328]
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]
Kahsai et al., 2012, Neuroscience 208: 11--26
Distribution of metabotropic receptors of serotonin, dopamine, GABA, glutamate, and short neuropeptide F in the central complex of Drosophila. [FBrf0217851]
Kallijärvi et al., 2012, PLoS ONE 7(12): e51997
Characterization of Drosophila GDNF Receptor-Like and Evidence for Its Evolutionarily Conserved Interaction with Neural Cell Adhesion Molecule (NCAM)/FasII. [FBrf0220419]
Keleman et al., 2012, Nature 489(7414): 145--149
Dopamine neurons modulate pheromone responses in Drosophila courtship learning. [FBrf0219398]
Kim et al., 2012, J. Biol. Chem. 287(9): 6628--6641
Glutathione s-transferase omega 1 activity is sufficient to suppress neurodegeneration in a Drosophila model of Parkinson disease. [FBrf0217543]
Liu et al., 2012, Curr. Biol. 22(22): 2114--2123
Two dopaminergic neurons signal to the dorsal fan-shaped body to promote wakefulness in Drosophila. [FBrf0220041]
Munoz-Soriano et al., 2012, J. Mol. Neurosci. 48(1): 136--143
Septin 4, the Drosophila Ortholog of Human CDCrel-1, Accumulates in parkin Mutant Brains and is Functionally Related to the Nedd4 E3 Ubiquitin Ligase. [FBrf0219099]
Neckameyer and Bhatt, 2012, BMC Neurosci. 13: 26
Neurotrophic actions of dopamine on the development of a serotonergic feeding circuit in Drosophila melanogaster. [FBrf0218484]
Schneider et al., 2012, PLoS ONE 7(12): e52007
Neuronal basis of innate olfactory attraction to ethanol in Drosophila. [FBrf0220349]
Xiong et al., 2012, J. Neurosci. 32(11): 3877--3886
ArfGAP1 Is a GTPase Activating Protein for LRRK2: Reciprocal Regulation of ArfGAP1 by LRRK2. [FBrf0217819]
Bang et al., 2011, PLoS Genet. 7(3): e1001346
Dopamine signalling in mushroom bodies regulates temperature-preference behaviour in Drosophila. [FBrf0213392]
Barone et al., 2011, Dis. Model Mech. 4(5): 701--707
Genetic activation of Nrf2 signaling is sufficient to ameliorate neurodegenerative phenotypes in a Drosophila model of Parkinson's disease. [FBrf0215025]
Chiang et al., 2011, Curr. Biol. 21(1): 1--11
Three-Dimensional Reconstruction of Brain-wide Wiring Networks in Drosophila at Single-Cell Resolution. [FBrf0212704]
Giang et al., 2011, J. Neurogenet. 25(1-2): 17--26
The Serotonin Transporter Expression in Drosophila melanogaster. [FBrf0213697]
Jepson et al., 2011, J. Biol. Chem. 286(10): 8325--8337
Engineered Alterations in RNA Editing Modulate Complex Behavior in Drosophila: REGULATORY DIVERSITY OF ADENOSINE DEAMINASE ACTING ON RNA (ADAR) TARGETS. [FBrf0213236]
Kaun et al., 2011, Nat. Neurosci. 14(5): 612--619
A Drosophila model for alcohol reward. [FBrf0213574]
Lee et al., 2011, Proc. Natl. Acad. Sci. U.S.A. 108(33): 13794--13799
Serotonin-mushroom body circuit modulating the formation of anesthesia-resistant memory in Drosophila. [FBrf0214737]
Riemensperger et al., 2011, Proc. Natl. Acad. Sci. U.S.A. 108(2): 834--839
Behavioral consequences of dopamine deficiency in the Drosophila central nervous system. [FBrf0212779]
Stavropoulos and Young, 2011, Neuron 72(6): 964--976
insomniac and Cullin-3 Regulate Sleep and Wakefulness in Drosophila. [FBrf0217043]
Vargas et al., 2011, genesis 49(5): 392--402
Synphilin suppresses α-synuclein neurotoxicity in a Parkinson's disease Drosophila model. [FBrf0213669]
Wakabayashi-Ito et al., 2011, PLoS ONE 6(10): e26183
dtorsin, the Drosophila Ortholog of the Early-Onset Dystonia TOR1A (DYT1), Plays a Novel Role in Dopamine Metabolism. [FBrf0216459]
Wang et al., 2011, J. Neurochem. 119(6): 1294--1305
Catecholamines up integrates dopamine synthesis and synaptic trafficking. [FBrf0216854]