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General Information
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| Symbol | Scer\GAL4elav.Switch.PO | Species | S. cerevisiae |
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| Name | | FlyBase ID | FBal0128065 |
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| Feature type | allele | Associated gene | Scer\GAL4 |
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| Allele class | |
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| Mutagen | in vitro construct - regulatory fusion, in vitro construct - coding region fusion |
Recent Updates
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| Description |
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| FB2013_03 |
New/Merged/Split Record
This record was either newly added to FlyBase for this release or is the result of merging or splitting existing records in this release
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| FB2013_02 |
Controlled Vocabulary Terms
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| All updates |
Click here to see a list of all updates to this record from FB2010_08 and on.
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Nature of the Allele
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| Allele class | |
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| Mutagen | |
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| Mutations Mapped to the Genome |
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| Associated Sequence Data |
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| Progenitor genotype | |
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| Nature of the lesion | Construct: A 3.5kb fragment of the elav gene (including the elav promoter and the 5' UTR exons 0 and 1) drives expression of the "GeneSwitch" protein which consists of the Scer\GAL4 DNA binding domain tagged with T:Hsap\PGRLBD (the ligand binding domain of T:Hsap\PGR) and T:Hsap\RELAAD (the activation domain of T:Hsap\RELA). |
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| Carried in construct | ( Martin-Lanneree et al., 2006, Murthy et al., 2003, Poirier et al., 2008, Sanyal et al., 2002, Kaufmann et al., 2002, Osterwalder et al., 2001, Osterwalder et al., 2001, Osterwalder et al., 2001, Mosca et al., 2005, Xu et al., 2008, van Swinderen, 2007, Pandey et al., 2007, Hwangbo et al., 2004, Bushey et al., 2009, Chang et al., 2003, Hekmat-Scafe et al., 2005, Rogina and Helfand, 2004, Sherwood et al., 2004, Wang et al., 2003, Joiner et al., 2006, Bauer et al., 2005, Bauer et al., 2005, Wu et al., 2005, Tian et al., 2011, Cheng et al., 2011, Kanao et al., 2010, Miguel et al., 2012, Chung et al., 2010, Kanao et al., 2012, Wang et al., 2012, Naganos et al., 2012, Wu et al., 2007, Tsuda et al., 2007, Furukawa et al., 2009, van Swinderen et al., 2009, Ford et al., 2007, Ingleby et al., 2009, Graf et al., 2009, Kurusu et al., 2009, Wu et al., 2009, Donlea et al., 2009, Haussmann et al., 2008, Ishimoto et al., 2009, Batlevi et al., 2010, Copeland et al., 2009, Khurana et al., 2006, Miguel et al., 2011, Tsurudome et al., 2010, Shen et al., 2009, Tricoire et al., 2009, Fridell et al., 2005, Ma et al., 2011, Liu et al., 2011, Bahadorani et al., 2010, Plyusnina et al., 2011, Lanson et al., 2011, Du et al., 2010, Murthy et al., 2005, Ball et al., 2010, Knight et al., 2010, Inagaki et al., 2012, Neckameyer, 2010, Neckameyer and Bhatt, 2012, Crocker et al., 2010, Luo and Sehgal, 2012, Sarkar et al., 2010, Pfeiffenberger and Allada, 2012, Rera et al., 2011, Brandt et al., 2008, Humphrey et al., 2009) |
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| Cytology | |
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Phenotypic Data
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Phenotypic Class
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Phenotype Manifest In
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Detailed Description
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External Data
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Interactions
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Phenotypic Class
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Phenotype Manifest In
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Additional Comments
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Genetic Interactions
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Xenogenetic Interactions
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Complementation & Rescue Data
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| Rescues | |
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| Partially rescues | |
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| Fails to rescue | |
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| Comments | |
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Stocks
( 1 ) |
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| Bloomington | |
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Notes on Origin
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Discoverer
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Comments
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| The Scer\GAL4[elav.Switch.PO] driver is leaky during the larval stages (driving expression of a UAS transgene in the absence of RU486). The "GeneSwitch" Scer\GAL4 protein produced by Scer\GAL4elav.Switch.PO allows conditional expression of UAS transgenes, dependant on the presence of the activator RU486 (RU486 is thought to activate the protein produced by Scer\GAL4elav.Switch.PO from a transcriptionally inactive to a transcriptionally active form). Expression of UAS transgenes by the Scer\GAL4elav.Switch.PO protein is dose-dependent on RU486 concentration, with low background in the absence of RU486. |
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External Crossreferences & Linkouts
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Synonyms & Secondary IDs
( 1 ) |
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References
( 71 ) |
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| Generate a list of | |
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| List References by type | |
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Recent research papers ( 16 ) |
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| - 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]
- Kanao et al., 2012, PLoS ONE 7(2): e30958
- The Nitric Oxide-Cyclic GMP Pathway Regulates FoxO and Alters Dopaminergic Neuron Survival in Drosophila. [FBrf0217639]
- Luo and Sehgal, 2012, Cell 148(4): 765--779
- Regulation of Circadian Behavioral Output via a MicroRNA-JAK/STAT Circuit. [FBrf0217497]
- Miguel et al., 2012, Neurobiol. Aging 33(5): 1008.e1--1008.e15
- Accumulation of insoluble forms of FUS protein correlates with toxicity in Drosophila. [FBrf0217826]
- Naganos et al., 2012, Neurosci. Res. 73(1): 49--55
- Mutations in the Drosophila insulin receptor substrate, CHICO, impair olfactory associative learning. [FBrf0217997]
- Neckameyer and Bhatt, 2012, BMC Neurosci. 13: 26
- Neurotrophic actions of dopamine on the development of a serotonergic feeding circuit in Drosophila melanogaster. [FBrf0218484]
- Pfeiffenberger and Allada, 2012, PLoS Genet. 8(10): e1003003
- Cul3 and the BTB Adaptor Insomniac Are Key Regulators of Sleep Homeostasis and a Dopamine Arousal Pathway in Drosophila. [FBrf0219613]
- Wang et al., 2012, Aging Cell 11(1): 93--103
- Reduced neuronal expression of ribose-5-phosphate isomerase enhances tolerance to oxidative stress, extends lifespan, and attenuates polyglutamine toxicity in Drosophila. [FBrf0217184]
- Cheng et al., 2011, J. Cell Biol. 194(6): 921--935
- S6 kinase localizes to the presynaptic active zone and functions with PDK1 to control synapse development. [FBrf0216911]
- Lanson et al., 2011, Hum. Mol. Genet. 20(13): 2510--2523
- A Drosophila model of FUS-related neurodegeneration reveals genetic interaction between FUS and TDP-43. [FBrf0213887]
- Liu et al., 2011, J. Neurosci. 31(6): 2052--2063
- Drosophila Acyl-CoA Synthetase Long-Chain Family Member 4 Regulates Axonal Transport of Synaptic Vesicles and Is Required for Synaptic Development and Transmission. [FBrf0212968]
- Ma et al., 2011, J. Gen. Physiol. 137(2): 225--238
- Slob, a Slowpoke channel-binding protein, modulates synaptic transmission. [FBrf0212896]
- Miguel et al., 2011, Neurobiol. Disease 41(2): 398--406
- Both cytoplasmic and nuclear accumulations of the protein are neurotoxic in Drosophila models of TDP-43 proteinopathies. [FBrf0212655]
- Plyusnina et al., 2011, Biogerontology 12(3): 211--226
- Increase of Drosophila melanogaster lifespan due to D-GADD45 overexpression in the nervous system. [FBrf0213783]
- Rera et al., 2011, Cell Metab. 14(5): 623--634
- Modulation of Longevity and Tissue Homeostasis by the Drosophila PGC-1 Homolog. [FBrf0216555]
- Tian et al., 2011, Nat. Neurosci. 14(10): 1267--1275
- Drosophila Rae1 controls the abundance of the ubiquitin ligase Highwire in post-mitotic neurons. [FBrf0216253]
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Recent reviews (0)
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All reviews listed in FlyBase were published before 2011 |
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