A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Allele Dmel\pAbpEP310

General Information
SymbolDmel\pAbpEP310SpeciesD. melanogaster
NameFlyBase IDFBal0117409
Feature typealleleAssociated geneDmel\pAbp
Also Known AsEP310
Map ( GBrowse ) Untitled Document detailed view FBti0069648 FBti0125264_2 FBti0125264_1 FBti0103360 FBti0030301 FBti0057651 FBti0111634 FBti0107525 FBti0107912 FBti0006528 FBti0025783 FBti0143710 FBti0007560
Allele class
MutagenP-element activity
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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
Insertion into the first 3' non-coding exon.
P{EP} insertion in the 3' untranslated region.
P{EP} insertion into the first 3' non-coding exon.
Caused by insertion
Cytology
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hide Phenotype Manifest In
spindle & spermatocyte
spindle & spermatocyte (with pAbpk10109)
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Statement
Reference
17% of homozygous and 18% of pAbp[EP310]/pAbp[k10109] spermatocytes show defects in meiosis, with the most common phenotype being detachment of the meiotic spindles from astral microtubules.
Over-expression of pAbp[EP310] reduces dendrite branching, and alters dendritic morphology in larval class IV sensory neurons (induced under the control of Scer\GAL4[Act.PU]). Total dendrite length is significantly reduced in these neurons. The rough eye phenotype observed in Fmr1[sev.PW] flies is suppressed in a pAbp[EP310]/+ background.
The density of T-bars in the boutons of pAbpEP310/Df(2R)Pcl7B mutants is the same as wild type.
The mean amplitude of miniature postsynaptic currents (mEJCs) at the neuromuscular junction is indistinguishable from wild type in pAbpEP310/Df(2R)Pcl7B flies. Evoked postsynaptic currents (eEJCs) are significantly larger than in wild-type. The number of junctional boutons per neuromuscular junction is increased compared to wild type.
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Linkouts
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Statement
Reference
hideEnhancer of
Statement
Reference
pAbp[+]/pAbpEP310 is an enhancer of visible phenotype of os1
hideNOT Enhancer of
Statement
Reference
pAbp[+]/pAbpEP310 is a non-enhancer of visible phenotype of osGMR.PB
hideSuppressor of
Statement
Reference
hideNOT Suppressor of
Statement
Reference
pAbp[+]/pAbpEP310 is a non-suppressor of visible phenotype of osGMR.PB
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Statement
Reference
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hideEnhanced by
Statement
Reference
pAbpEP310 has spermatocyte phenotype, enhanceable by larpmtr-null/larp[+]
pAbpEP310 has spermatocyte phenotype, enhanceable by larpS003108/larp[+]
hideEnhancer of
Statement
Reference
pAbp[+]/pAbpEP310 is an enhancer of eye phenotype of os1
pAbp[+]/pAbpEP310 is an enhancer of spermatocyte phenotype of larpS003108
hideNOT Enhancer of
Statement
Reference
pAbp[+]/pAbpEP310 is a non-enhancer of eye phenotype of osGMR.PB
hideSuppressor of
Statement
Reference
pAbp[+]/pAbpEP310 is a suppressor of eye phenotype of Fmr1sev.PW
hideNOT Suppressor of
Statement
Reference
pAbp[+]/pAbpEP310 is a non-suppressor of eye phenotype of osGMR.PB
hideOther
Statement
Reference
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hide Genetic Interactions
Statement
Reference
23% of pAbp[EP310]/+ ; larp[mtr-null]/+ double heterozygous spermatocytes show defects in meiosis. 16% of pAbp[EP310]/+ ; larp[S003108]/+ double heterozygous spermatocytes show defects in meiosis. The frequency of homozygous pAbp[EP310] spermatocytes that show defects in meiosis (17%) is increased by larp[mtr-null]/+ (to 31.4%) or larp[S003108]/+ (to 29.3%).
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Statement
Reference
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Comments
hide Stocks ( 1 )
Bloomington
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Discoverer
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Other Crossreferences
Linkouts
hide Synonyms & Secondary IDs ( 3 )
Reported As
Symbol Synonym
pAbpEP0310
 
Name Synonym
Secondary FlyBase IDs
hide References ( 8 )
Research paper
Pertceva et al., 2010, Cell Biol. Int. 34(10): 991--996
The role of Drosophila hyperplastic discs gene in spermatogenesis. [FBrf0211767]
Blagden et al., 2009, Dev. Biol. 334(1): 186--197
Drosophila Larp associates with poly(A)-binding protein and is required for male fertility and syncytial embryo development. [FBrf0208825]
Cziko et al., 2009, Genetics 182(4): 1051--1060
Genetic Modifiers of dFMR1 Encode RNA Granule Components in Drosophila. [FBrf0208636]
Mukherjee et al., 2006, Genetics 172(3): 1683--1697
Identification of Drosophila genes modulating janus kinase/signal transducer and activator of transcription signal transduction. [FBrf0190752]
Hekmat-Scafe et al., 2005, Genetics 169(3): 1477--1493
Seizure suppression by gain-of-function escargot mutations. [FBrf0183998]
Reiff et al., 2002, J. Neurosci. 22(21): 9399--9409
Differential regulation of active zone density during long-term strengthening of Drosophila neuromuscular junctions. [FBrf0152148]
Sigrist et al., 2000, Nature 405(6790): 1062--1065
Postsynaptic translation affects the efficacy and morphology of neuromuscular junctions. [FBrf0128816]
Personal communication to FlyBase
Gene Disruption Project members, 2001-, (Computer file)
(Computer file) [FBrf0132177]