The gene Insulin-like peptide 5 is referred to in FlyBase by the symbol Dmel\Ilp5 (CG33273, FBgn0044048). It is a protein_coding_gene from Drosophila melanogaster. Based on sequence similarity, it is predicted to have molecular function: insulin receptor binding. There is experimental evidence that it is involved in the biological process: female mating behavior. 9 alleles are reported. The phenotype of these alleles is annotated with: embryonic/larval neuroblast. It has one annotated transcript and one annotated polypeptide. Protein features are: Insulin family; Insulin, conserved site; Insulin-like. Summary of modENCODE Temporal Expression Profile: Temporal profile ranges from a peak of moderate expression to a trough of no expression detected. Peak expression observed at stages throughout the larval period, during early pupal stages, in adult male stages. Summary of FlyAtlas Anatomical Expression Data: Expression at high levels in the following post-embryonic organs or tissues: larval/adult central nervous system. Expression at moderate levels in the following post-embryonic organs or tissues: adult head, larval Malpighian tubules. Comments on Affy2 ProbeSet: ProbeSet 1624745_at completely aligns to an exonic region of the only FlyBase-annotated transcript isoform of Ilp5. Gene sequence location is 3L:9816449..9816997.
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FB2013_03
FB2013_02
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Ilp5 is expressed in a bilaterally symmetrical cluster of 5 to 7 neurosecretory cells in the pars intercerebralis. It is co-expressed with Ilp3 and Ilp2.
Transcript is expressed in two clusters of cells in the pars intercerebralis corresponding to the medial neurosecretory cell clusters (m-NSCs) from the mid-late third larval instar.
Summary of FlyAtlas Anatomical Expression Data: Expression at high levels in the following post-embryonic organs or tissues: larval/adult central nervous system. Expression at moderate levels in the following post-embryonic organs or tissues: adult head, larval Malpighian tubules.
[download data (TSV)]
Guide to FlyAtlas expression level colors
No expression (0 - 9.999)
Low expression (10 - 99.999)
Moderate expression (100 - 499.999)
High level expression (500 - 999.999)
Very high expression (>999.999)
Linear, scaled to maximum expression level
Tissue
Expression Level
Larval Central Nervous System
630.75
Larval Midgut
9.1
Larval Hindgut
8.7
Larval Malpighian Tubules
286.1
Larval Fat Body
16.2
Larval Salivary Gland
10.5
Larval Trachea
4.3
Larval Carcass
10.825
Adult Head
184.8
Adult Eye
4.775
Adult Brain
683
Adult Thoracic-Abdominal Ganglion
4.5
Adult Crop
9.8
Adult Midgut
12
Adult Hindgut
7
Adult Malpighian Tubules
10.3
Adult Fat Body
8.8
Adult Salivary Gland
10.1
Adult Heart
2.925
Adult VirginFemale Spermatheca
8.8
Adult InseminatedFemale Spermatheca
5.7
Adult Ovary
4.4
Adult Testis
6.5
Adult Male Accessory Gland
10.4
Adult Carcass
15.3
Expression Level Scale
None
Low
Moderate
High
Linear, scaled to Moderate expression
Tissue
Expression Level
Larval Central Nervous System
(630.75)
Larval Midgut
9.1
Larval Hindgut
8.7
Larval Malpighian Tubules
286.1
Larval Fat Body
16.2
Larval Salivary Gland
10.5
Larval Trachea
4.3
Larval Carcass
10.825
Adult Head
184.8
Adult Eye
4.775
Adult Brain
(683)
Adult Thoracic-Abdominal Ganglion
4.5
Adult Crop
9.8
Adult Midgut
12
Adult Hindgut
7
Adult Malpighian Tubules
10.3
Adult Fat Body
8.8
Adult Salivary Gland
10.1
Adult Heart
2.925
Adult VirginFemale Spermatheca
8.8
Adult InseminatedFemale Spermatheca
5.7
Adult Ovary
4.4
Adult Testis
6.5
Adult Male Accessory Gland
10.4
Adult Carcass
15.3
Expression Level Scale
None
Low
Moderate
High
Linear, scaled to High level expression
Tissue
Expression Level
Larval Central Nervous System
630.75
Larval Midgut
9.1
Larval Hindgut
8.7
Larval Malpighian Tubules
286.1
Larval Fat Body
16.2
Larval Salivary Gland
10.5
Larval Trachea
4.3
Larval Carcass
10.825
Adult Head
184.8
Adult Eye
4.775
Adult Brain
683
Adult Thoracic-Abdominal Ganglion
4.5
Adult Crop
9.8
Adult Midgut
12
Adult Hindgut
7
Adult Malpighian Tubules
10.3
Adult Fat Body
8.8
Adult Salivary Gland
10.1
Adult Heart
2.925
Adult VirginFemale Spermatheca
8.8
Adult InseminatedFemale Spermatheca
5.7
Adult Ovary
4.4
Adult Testis
6.5
Adult Male Accessory Gland
10.4
Adult Carcass
15.3
Expression Level Scale
None
Low
Moderate
High
Very high
Linear, scaled to Very high expression
Tissue
Expression Level
Larval Central Nervous System
630.75
Larval Midgut
9.1
Larval Hindgut
8.7
Larval Malpighian Tubules
286.1
Larval Fat Body
16.2
Larval Salivary Gland
10.5
Larval Trachea
4.3
Larval Carcass
10.825
Adult Head
184.8
Adult Eye
4.775
Adult Brain
683
Adult Thoracic-Abdominal Ganglion
4.5
Adult Crop
9.8
Adult Midgut
12
Adult Hindgut
7
Adult Malpighian Tubules
10.3
Adult Fat Body
8.8
Adult Salivary Gland
10.1
Adult Heart
2.925
Adult VirginFemale Spermatheca
8.8
Adult InseminatedFemale Spermatheca
5.7
Adult Ovary
4.4
Adult Testis
6.5
Adult Male Accessory Gland
10.4
Adult Carcass
15.3
Expression Level Scale
Very high
log, scaled to maximum expression level
Tissue
Expression Level
Larval Central Nervous System
630.75
Larval Midgut
9.1
Larval Hindgut
8.7
Larval Malpighian Tubules
286.1
Larval Fat Body
16.2
Larval Salivary Gland
10.5
Larval Trachea
4.3
Larval Carcass
10.825
Adult Head
184.8
Adult Eye
4.775
Adult Brain
683
Adult Thoracic-Abdominal Ganglion
4.5
Adult Crop
9.8
Adult Midgut
12
Adult Hindgut
7
Adult Malpighian Tubules
10.3
Adult Fat Body
8.8
Adult Salivary Gland
10.1
Adult Heart
2.925
Adult VirginFemale Spermatheca
8.8
Adult InseminatedFemale Spermatheca
5.7
Adult Ovary
4.4
Adult Testis
6.5
Adult Male Accessory Gland
10.4
Adult Carcass
15.3
Expression Level Scale
None
Low
Moderate
High
Very high
log, scaled to Moderate expression
Tissue
Expression Level
Larval Central Nervous System
630.75
Larval Midgut
9.1
Larval Hindgut
8.7
Larval Malpighian Tubules
286.1
Larval Fat Body
16.2
Larval Salivary Gland
10.5
Larval Trachea
4.3
Larval Carcass
10.825
Adult Head
184.8
Adult Eye
4.775
Adult Brain
683
Adult Thoracic-Abdominal Ganglion
4.5
Adult Crop
9.8
Adult Midgut
12
Adult Hindgut
7
Adult Malpighian Tubules
10.3
Adult Fat Body
8.8
Adult Salivary Gland
10.1
Adult Heart
2.925
Adult VirginFemale Spermatheca
8.8
Adult InseminatedFemale Spermatheca
5.7
Adult Ovary
4.4
Adult Testis
6.5
Adult Male Accessory Gland
10.4
Adult Carcass
15.3
Expression Level Scale
None
Low
Moderate
High
log, scaled to High level expression
Tissue
Expression Level
Larval Central Nervous System
630.75
Larval Midgut
9.1
Larval Hindgut
8.7
Larval Malpighian Tubules
286.1
Larval Fat Body
16.2
Larval Salivary Gland
10.5
Larval Trachea
4.3
Larval Carcass
10.825
Adult Head
184.8
Adult Eye
4.775
Adult Brain
683
Adult Thoracic-Abdominal Ganglion
4.5
Adult Crop
9.8
Adult Midgut
12
Adult Hindgut
7
Adult Malpighian Tubules
10.3
Adult Fat Body
8.8
Adult Salivary Gland
10.1
Adult Heart
2.925
Adult VirginFemale Spermatheca
8.8
Adult InseminatedFemale Spermatheca
5.7
Adult Ovary
4.4
Adult Testis
6.5
Adult Male Accessory Gland
10.4
Adult Carcass
15.3
Expression Level Scale
None
Low
Moderate
High
Very high
log, scaled to Very high expression
Tissue
Expression Level
Larval Central Nervous System
630.75
Larval Midgut
9.1
Larval Hindgut
8.7
Larval Malpighian Tubules
286.1
Larval Fat Body
16.2
Larval Salivary Gland
10.5
Larval Trachea
4.3
Larval Carcass
10.825
Adult Head
184.8
Adult Eye
4.775
Adult Brain
683
Adult Thoracic-Abdominal Ganglion
4.5
Adult Crop
9.8
Adult Midgut
12
Adult Hindgut
7
Adult Malpighian Tubules
10.3
Adult Fat Body
8.8
Adult Salivary Gland
10.1
Adult Heart
2.925
Adult VirginFemale Spermatheca
8.8
Adult InseminatedFemale Spermatheca
5.7
Adult Ovary
4.4
Adult Testis
6.5
Adult Male Accessory Gland
10.4
Adult Carcass
15.3
Expression Level Scale
None
Low
Moderate
High
Very high
Heatmap
Tissue
Expression Level
Larval Central Nervous System
Larval Midgut
Larval Hindgut
Larval Malpighian Tubules
Larval Fat Body
Larval Salivary Gland
Larval Trachea
Larval Carcass
Adult Head
Adult Eye
Adult Brain
Adult Thoracic-Abdominal Ganglion
Adult Crop
Adult Midgut
Adult Hindgut
Adult Malpighian Tubules
Adult Fat Body
Adult Salivary Gland
Adult Heart
Adult VirginFemale Spermatheca
Adult InseminatedFemale Spermatheca
Adult Ovary
Adult Testis
Adult Male Accessory Gland
Adult Carcass
FlyAtlas Organ/Tissue Expression, larval vs. adult
Summary of modENCODE Temporal Expression Profile: Temporal profile ranges from a peak of moderate expression to a trough of no expression detected. Peak expression observed at stages throughout the larval period, during early pupal stages, in adult male stages.
[download data (TSV)]
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may not be complete
cDNA Clones ( 2 )
Please Note
This section lists
cDNAs and ESTs that fall within the genomic extent
of the gene model, which may include cDNAs and ESTs
of genes within introns, or of overlapping genes.
Please see GBrowse for alignment of the cDNAs and ESTs
to the gene model.
A secreted decoy of InR antagonizes insulin/IGF signaling to restrict body growth in Drosophila. [FBrf0220509]
Fabian et al., 2012, Mol. Ecol. 21(19): 4748--4769
Genome-wide patterns of latitudinal differentiation among populations of Drosophila melanogaster from North America. [FBrf0219505]
Mann et al., 2012, Development 139(4): 760--771
A putative tyrosine phosphorylation site of the cell surface receptor Golden goal is involved in synaptic layer selection in the visual system. [FBrf0217291]
Marshall et al., 2012, EMBO J. 31(8): 1916--1930
Nutrient/TOR-dependent regulation of RNA polymerase III controls tissue and organismal growth in Drosophila. [FBrf0218035]
Okamoto et al., 2012, Proc. Natl. Acad. Sci. U.S.A. 109(7): 2406--2411
Conserved role for the Dachshund protein with Drosophila Pax6 homolog Eyeless in insulin expression. [FBrf0217470]
Rideout et al., 2012, Proc. Natl. Acad. Sci. U.S.A. 109(4): 1139--1144
Drosophila RNA polymerase III repressor Maf1 controls body size and developmental timing by modulating tRNAiMet synthesis and systemic insulin signaling. [FBrf0217359]
Stafford et al., 2012, J. Neurosci. 32(42): 14767--14774
Integration of taste and calorie sensing in Drosophila. [FBrf0219704]
Thomas et al., 2012, PLoS ONE 7(7): e40276
A Versatile Method for Cell-Specific Profiling of Translated mRNAs in Drosophila. [FBrf0218903]
Thomson et al., 2012, genesis 50(6): 453--465
Oocyte destruction is activated during viral infection. [FBrf0218617]
Yu et al., 2012, Mol. Cell. Biol. 32(18): 3610--3623
Neuronal Cbl Controls Biosynthesis of Insulin-Like Peptides in Drosophila melanogaster. [FBrf0219284]
Alic et al., 2011, Aging Cell 10(1): 137--147
Lifespan extension by increased expression of the Drosophila homologue of the IGFBP7 tumour suppressor. [FBrf0212768]
Birse et al., 2011, J. Exp. Biol. 214(24): 4201--4208
Regulation of insulin-producing cells in the adult Drosophila brain via the tachykinin peptide receptor DTKR. [FBrf0216793]
Boyd et al., 2011, Free Radical Biol. Med. 50(11): 1669--1678
Nectarine promotes longevity in Drosophila melanogaster. [FBrf0213612]
Guirao-Rico and Aguadé, 2011, Mol. Biol. Evol. 28(5): 1557--1560
Molecular evolution of the ligands of the insulin-signaling pathway: dilp genes in the genus drosophila. [FBrf0214497]
Karpac et al., 2011, Dev. Cell 20(6): 841--854
Dynamic coordination of innate immune signaling and insulin signaling regulates systemic responses to localized DNA damage. [FBrf0213873]
McClure et al., 2011, Dis. Model Mech. 4(3): 335--346
A Drosophila model for fetal alcohol syndrome disorders: role for the insulin pathway. [FBrf0213698]
Sajid et al., 2011, J. Biol. Chem. 286(1): 661--673
Structural and Biological Properties of the Drosophila Insulin-like Peptide 5 Show Evolutionary Conservation. [FBrf0212648]
Sheldon et al., 2011, PLoS ONE 6(8): e23343
SLOB, a SLOWPOKE Channel Binding Protein, Regulates Insulin Pathway Signaling and Metabolism in Drosophila. [FBrf0214706]
Shin et al., 2011, Science 334(6056): 670--674
Drosophila microbiome modulates host developmental and metabolic homeostasis via insulin signaling. [FBrf0216582]
Slack et al., 2011, Aging Cell 10(5): 735--748
dFOXO-independent effects of reduced insulin-like signaling in Drosophila. [FBrf0215229]
Sousa-Nunes et al., 2011, Nature 471(7339): 508--512
Fat cells reactivate quiescent neuroblasts via TOR and glial insulin relays in Drosophila. [FBrf0214426]
Söderberg et al., 2011, PLoS ONE 6(5): e19866
Insulin Production and Signaling in Renal Tubules of Drosophila Is under Control of Tachykinin-Related Peptide and Regulates Stress Resistance. [FBrf0213657]
Wang et al., 2011, Cell Cycle 10(16): 2628--2634
Regulation of adult stem cell behavior by nutrient signaling. [FBrf0214811]
Wigby et al., 2011, Proc. Biol. Sci. 278(1704): 424--431
Insulin signalling regulates remating in female Drosophila. [FBrf0212666]