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CG9296 Drosophila melanogaster
CG9296 is differentially expressed in 5 experiments [5 up/3 dn]: 3 organism parts: midgut [0 up/1 dn], brain [1 up/0 dn], ...; 2 developmental stages: third instar larvae [1 up/0 dn], pupae [0 up/1 dn], 2 genotypes, 1 RNAis
Synonyms CG5682, CG9296, Dmel_CG5682, Edem2-RA, Edem2
Orthologs NP_001102276.1 (Rattus norvegicus)  Pde6d (Mus musculus)  PDE6D (Homo sapiens)  (Compare orthologs)
InterPro Term Glycoside hydrolase, family 47, Protease-associated PA
GO Terms calcium ion binding, mannosyl-oligosaccharide 1,2-alpha-mannosidase activity, membrane, metabolic process
Uniprot Q8MS36  Q9VK27 
Search EB-eye FBgn0032059
REST API
Expression Summary
8 factor values, click each to filter
Factor Value Factor Up/Down
Legend: - number of studies the gene is up/down in
Midgut Organism part
1
Third instar larvae Developmental stage
1
Brain Organism part
1
Ada2aΔ189 Genotype
1
MOF_MSL3_GFP RNAi
1
Testis Organism part
1
W1118 Genotype
1
Pupae Developmental stage
1
Expression Profiles
E-MAXD-6: Transcription profiling of Drosophila melanogaster larvae infected with parasitoids at nine time points vs. uninfected controls to investigate the host response to parasitoid attack
Experimental Factors
Show expression profile  /  experiment details

 
E-GEOD-7763: Transcription profing of Drosophila tissues in adult and larva
Experimental Factors
Organism part
Show expression profile  /  experiment details

 
E-GEOD-3057: Transcription profiling of w1118 Drosophila melanogaster sampled at multiple developmental stages to dentifies genes that alter their expression in synchrony with the late third instar and prepupal pulses of 20
Experimental Factors
Time Developmental stage
Show expression profile  /  experiment details

 
E-MEXP-1208: Transcription profiling of Gcn5 and Ada2a mutant Drosophila larve, with previously published data from Nurf301 mutant
Experimental Factors
Genotype
Show expression profile  /  experiment details

 
E-MEXP-1505: Tiling path and RNAi of Drosophila KO MSL1, MLS3, and MOF reveals MOF as a key regulator of dosage compensation and gene expression
Experimental Factors
RNAi Cell line
Show expression profile  /  experiment details

 
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