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FB:chico

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Contents

Species (Taxon ID) Drosophila melanogaster (fruit fly) (taxon:7227)
Gene Name(s) chico ( synonyms: BcDNA.GH11263, BcDNA:GH11263, CG5686, CHICO, Chico, IRS, IRS/chico, Insulin receptor substrate, anon-WO0078940.1, anon-WO0078940.4, chic, dIRS, flipper, fs(2)4, fs(2)ry4, insulin receptor substrate, insulin-like receptor substrate )
Protein Name(s) chico,
External Links
FB FBgn0024248

Annotations

Qualifier GO ID GO term name Reference Evidence Code with/from Aspect Notes Status
GO:0000902

cell morphogenesis

FB:FBrf0108621
PMID:10399915[1]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0005158

insulin receptor binding

FB:FBrf0174215

IEA: Inferred from Electronic Annotation

InterPro:IPR002404

F

From FB

GO:0005159

insulin-like growth factor receptor binding

FB:FBrf0105495

ISS: Inferred from Sequence or Structural Similarity

UniProtKB:P35569

F

From FB

GO:0005159

insulin-like growth factor receptor binding

FB:FBrf0108621
PMID:10399915[1]

IGI: Inferred from Genetic Interaction

FB:FBgn0013984

F

From FB

GO:0005159

insulin-like growth factor receptor binding

FB:FBrf0108621
PMID:10399915[1]

ISS: Inferred from Sequence or Structural Similarity

HGNC:6125

F

From FB

GO:0005159

insulin-like growth factor receptor binding

FB:FBrf0108621
PMID:10399915[1]

ISS: Inferred from Sequence or Structural Similarity

HGNC:6126

F

From FB

GO:0005159

insulin-like growth factor receptor binding

FB:FBrf0113403

NAS: Non-traceable Author Statement

F

From FB

GO:0005159

insulin-like growth factor receptor binding

FB:FBrf0119010

NAS: Non-traceable Author Statement

F

From FB

GO:0005543

phospholipid binding

FB:FBrf0174215

IEA: Inferred from Electronic Annotation

InterPro:IPR001849

F

From FB

GO:0007285

primary spermatocyte growth

FB:FBrf0208094
PMID:19384053[2]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0007295

growth of a germarium-derived egg chamber

FB:FBrf0134545
PMID:11180967[3]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0007296

vitellogenesis

FB:FBrf0134545
PMID:11180967[3]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0007568

aging

FB:FBrf0135946
PMID:11292874[4]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0008152

metabolic process

FB:FBrf0156191
PMID:11897402[5]

TAS: Traceable Author Statement

P

From FB

GO:0008286

insulin receptor signaling pathway

FB:FBrf0108621
PMID:10399915[1]

IGI: Inferred from Genetic Interaction

FB:FBgn0013984

P

From FB

GO:0008286

insulin receptor signaling pathway

FB:FBrf0108621
PMID:10399915[1]

IGI: Inferred from Genetic Interaction

FB:FBgn0015279

P

From FB

GO:0008286

insulin receptor signaling pathway

FB:FBrf0141377
PMID:11782950[6]

NAS: Non-traceable Author Statement

P

From FB

GO:0008286

insulin receptor signaling pathway

FB:FBrf0156191
PMID:11897402[5]

TAS: Traceable Author Statement

P

From FB

GO:0008340

determination of adult lifespan

FB:FBrf0155558
PMID:12539239[7]

TAS: Traceable Author Statement

P

From FB

GO:0008340

determination of adult lifespan

FB:FBrf0155931
PMID:12470891[8]

TAS: Traceable Author Statement

P

From FB

GO:0008340

determination of adult lifespan

FB:FBrf0156109
PMID:11998690[9]

TAS: Traceable Author Statement

P

From FB

GO:0008340

determination of adult lifespan

FB:FBrf0156191
PMID:11897402[5]

TAS: Traceable Author Statement

P

From FB

GO:0008340

determination of adult lifespan

FB:FBrf0167266
PMID:14616064[10]

TAS: Traceable Author Statement

P

From FB

GO:0008361

regulation of cell size

FB:FBrf0090759
PMID:8946916[11]

TAS: Traceable Author Statement

P

From FB

GO:0008361

regulation of cell size

FB:FBrf0156191
PMID:11897402[5]

NAS: Non-traceable Author Statement

P

From FB

GO:0030307

positive regulation of cell growth

FB:FBrf0141377
PMID:11782950[6]

NAS: Non-traceable Author Statement

P

From FB

GO:0034059

response to anoxia

FB:FBrf0207966
PMID:19412543[12]

IDA: Inferred from Direct Assay

P

From FB

GO:0035159

regulation of tube length, open tracheal system

FB:FBrf0128394
PMID:10887083[13]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0040014

regulation of multicellular organism growth

FB:FBrf0156191
PMID:11897402[5]

TAS: Traceable Author Statement

P

From FB

GO:0040018

positive regulation of multicellular organism growth

FB:FBrf0125443
PMID:10679387[14]

TAS: Traceable Author Statement

P

From FB

GO:0040018

positive regulation of multicellular organism growth

FB:FBrf0130003
PMID:11128988[15]

TAS: Traceable Author Statement

P

From FB

GO:0040018

positive regulation of multicellular organism growth

FB:FBrf0151278
PMID:12163412[16]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0040018

positive regulation of multicellular organism growth

FB:FBrf0156084
PMID:12559758[17]

TAS: Traceable Author Statement

P

From FB

GO:0040018

positive regulation of multicellular organism growth

FB:FBrf0157335
PMID:12655636[18]

TAS: Traceable Author Statement

P

From FB

GO:0040018

positive regulation of multicellular organism growth

FB:FBrf0208858
PMID:19778508[19]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0042594

response to starvation

FB:FBrf0151278
PMID:12163412[16]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0042594

response to starvation

FB:FBrf0155931
PMID:12470891[8]

TAS: Traceable Author Statement

P

From FB

GO:0045793

positive regulation of cell size

FB:FBrf0125443
PMID:10679387[14]

TAS: Traceable Author Statement

P

From FB

GO:0045793

positive regulation of cell size

FB:FBrf0130003
PMID:11128988[15]

TAS: Traceable Author Statement

P

From FB

GO:0045793

positive regulation of cell size

FB:FBrf0136845
PMID:11377964[20]

NAS: Non-traceable Author Statement

P

From FB

GO:0045793

positive regulation of cell size

FB:FBrf0156084
PMID:12559758[17]

TAS: Traceable Author Statement

P

From FB

GO:0045793

positive regulation of cell size

FB:FBrf0159230
PMID:12563289[21]

TAS: Traceable Author Statement

P

From FB

GO:0046620

regulation of organ growth

FB:FBrf0156191
PMID:11897402[5]

NAS: Non-traceable Author Statement

P

From FB

GO:0046620

regulation of organ growth

FB:FBrf0188217
PMID:16086608[22]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0046622

positive regulation of organ growth

FB:FBrf0125443
PMID:10679387[14]

TAS: Traceable Author Statement

P

From FB

GO:0046622

positive regulation of organ growth

FB:FBrf0136845
PMID:11377964[20]

NAS: Non-traceable Author Statement

P

From FB

GO:0046622

positive regulation of organ growth

FB:FBrf0156084
PMID:12559758[17]

TAS: Traceable Author Statement

P

From FB

GO:0048133

male germ-line stem cell division

FB:FBrf0208094
PMID:19384053[2]

IMP: Inferred from Mutant Phenotype

P

From FB

GO:0060250

germ-line stem-cell niche homeostasis

FB:FBrf0206962
PMID:19136634[23]

IMP: Inferred from Mutant Phenotype

P

From FB


Notes

References

See Help:References for how to manage references in GONUTS.
  1. 1.0 1.1 1.2 1.3 1.4 1.5 Böhni R et al. (1999) Autonomous control of cell and organ size by CHICO, a Drosophila homolog of vertebrate IRS1-4. Cell 97: 865-75 PubMed GONUTS page
  2. 2.0 2.1 Ueishi S et al. (2009) Male germline stem cell division and spermatocyte growth require insulin signaling in Drosophila. Cell Struct Funct 34: 61-9 PubMed GONUTS page
  3. 3.0 3.1 Drummond-Barbosa D & Spradling AC (2001) Stem cells and their progeny respond to nutritional changes during Drosophila oogenesis. Dev Biol 231: 265-78 PubMed GONUTS page
  4. Clancy DJ et al. (2001) Extension of life-span by loss of CHICO, a Drosophila insulin receptor substrate protein. Science 292: 104-6 PubMed GONUTS page
  5. 5.0 5.1 5.2 5.3 5.4 5.5 Claeys I et al. (2002) Insulin-related peptides and their conserved signal transduction pathway. Peptides 23: 807-16 PubMed GONUTS page
  6. 6.0 6.1 Johnston LA & Gallant P (2002) Control of growth and organ size in Drosophila. Bioessays 24: 54-64 PubMed GONUTS page
  7. Helfand SL & Rogina B (2003) Molecular genetics of aging in the fly: is this the end of the beginning? Bioessays 25: 134-41 PubMed GONUTS page
  8. 8.0 8.1 Aigaki T et al. (2002) Longevity determination genes in Drosophila melanogaster. Mech Ageing Dev 123: 1531-41 PubMed GONUTS page
  9. Wolkow CA (2002) Life span: getting the signal from the nervous system. Trends Neurosci 25: 212-6 PubMed GONUTS page
  10. Helfand SL & Rogina B (2003) Genetics of aging in the fruit fly, Drosophila melanogaster. Annu Rev Genet 37: 329-48 PubMed GONUTS page
  11. Riesgo-Escovar JR et al. (1996) The Drosophila Jun-N-terminal kinase is required for cell morphogenesis but not for DJun-dependent cell fate specification in the eye. Genes Dev 10: 2759-68 PubMed GONUTS page
  12. Vigne P et al. (2009) Strong dietary restrictions protect Drosophila against anoxia/reoxygenation injuries. PLoS One 4: e5422 PubMed GONUTS page
  13. Beitel GJ & Krasnow MA (2000) Genetic control of epithelial tube size in the Drosophila tracheal system. Development 127: 3271-82 PubMed GONUTS page
  14. 14.0 14.1 14.2 Weinkove D & Leevers SJ (2000) The genetic control of organ growth: insights from Drosophila. Curr Opin Genet Dev 10: 75-80 PubMed GONUTS page
  15. 15.0 15.1 Oldham S et al. (2000) Genetic control of size in Drosophila. Philos Trans R Soc Lond B Biol Sci 355: 945-52 PubMed GONUTS page
  16. 16.0 16.1 Oldham S et al. (2002) The Drosophila insulin/IGF receptor controls growth and size by modulating PtdInsP(3) levels. Development 129: 4103-9 PubMed GONUTS page
  17. 17.0 17.1 17.2 Oldham S & Hafen E (2003) Insulin/IGF and target of rapamycin signaling: a TOR de force in growth control. Trends Cell Biol 13: 79-85 PubMed GONUTS page
  18. Gumienny TL & Padgett RW (2003) A small issue addressed. Bioessays 25: 305-8 PubMed GONUTS page
  19. Parrish JZ et al. (2009) The microRNA bantam functions in epithelial cells to regulate scaling growth of dendrite arbors in drosophila sensory neurons. Neuron 63: 788-802 PubMed GONUTS page
  20. 20.0 20.1 Potter CJ & Xu T (2001) Mechanisms of size control. Curr Opin Genet Dev 11: 279-86 PubMed GONUTS page
  21. Jacinto E & Hall MN (2003) Tor signalling in bugs, brain and brawn. Nat Rev Mol Cell Biol 4: 117-26 PubMed GONUTS page
  22. Shingleton AW et al. (2005) The temporal requirements for insulin signaling during development in Drosophila. PLoS Biol 3: e289 PubMed GONUTS page
  23. Hsu HJ & Drummond-Barbosa D (2009) Insulin levels control female germline stem cell maintenance via the niche in Drosophila. Proc Natl Acad Sci U S A 106: 1117-21 PubMed GONUTS page
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