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IGF1

insulin like growth factor 1
General Information
Name insulin like growth factor 1
Alias
  • insulin-like growth factor I
  • insulin-like growth factor 1 (somatomedin C)
  • insulin-like growth factor IB
  • mechano growth factor
  • somatomedin-C
Gene_family Neuropeptides
organism Homo sapiens
entrez_id 3479
location 12q23.2
transcript_count 10
exon_count 7
Location
12p13.33p13.2p12.1p11.1q13.11q13.2q14.3q21.2q21.33q23.2q24.12q24.31
by NCBI GRCh38.p14
Summary
    Entrez The protein encoded by this gene is similar to insulin in function and structure and is a member of a family of proteins involved in mediating growth and development. The encoded protein is processed from a precursor, bound by a specific receptor, and secreted. Defects in this gene are a cause of insulin-like growth factor I deficiency. Alternative splicing results in multiple transcript variants encoding different isoforms that may undergo similar processing to generate mature protein. [provided by RefSeq, Sep 2015]
    Stringdb Insulin-like growth factor I; The insulin-like growth factors, isolated from plasma, are structurally and functionally related to insulin but have a much higher growth-promoting activity. May be a physiological regulator of [1-14C]-2-deoxy-D-glucose (2DG) transport and glycogen synthesis in osteoblasts. Stimulates glucose transport in bone-derived osteoblastic (PyMS) cells and is effective at much lower concentrations than insulin, not only regarding glycogen and DNA synthesis but also with regard to enhancing glucose uptake. May play a role in synapse maturation. Ca(2+)-dependent exoc [...]
    nextProt The insulin-like growth factors, isolated from plasma, are structurally and functionally related to insulin but have a much higher growth-promoting activity. May be a physiological regulator of [1-14C]-2-deoxy-D-glucose (2DG) transport and glycogen synthesis in osteoblasts. Stimulates glucose transport in bone-derived osteoblastic (PyMS) cells and is effective at much lower concentrations than insulin, not only regarding glycogen and DNA synthesis but also with regard to enhancing glucose uptake. May play a role in synapse maturation (PubMed:21076856, PubMed:24132240). Ca(2+)-dependent exocytosis of IGF1 is required for sensory perception of smell in the olfactory bulb (By similarity). Acts as a ligand for IGF1R. Binds to the alpha subunit of IGF1R, leading to the activation of the intrinsic tyrosine kinase activity which autophosphorylates tyrosine residues in the beta subunit thus initiatiating a cascade of down-stream signaling events leading to activation of the PI3K-AKT/PKB and the Ras-MAPK pathways. Binds to integrins ITGAV:ITGB3 and ITGA6:ITGB4. Its binding to integrins and subsequent ternary complex formation with integrins and IGFR1 are essential for IGF1 signaling. Induces the phosphorylation and activation of IGFR1, MAPK3/ERK1, MAPK1/ERK2 and AKT1 (PubMed:19578119, PubMed:22351760, PubMed:23696648, PubMed:23243309).
Interactions
NCBI
StringDB
Ontologies
Pathways
Transcripts
Accession Version MolecularType Name NCBI Comments
XM_017019263 3 mRNA transcript variant X3 NC_000012 Reference
XM_017019262 3 mRNA transcript variant X2 NC_000012 Reference
NM_001414007 1 mRNA transcript variant 7 NC_000012 Reference
NM_000618 5 mRNA transcript variant 4 NC_000012 Reference
NM_001111283 3 mRNA transcript variant 1 NC_000012 Reference
NM_001111284 2 mRNA transcript variant 2 NC_000012 Reference
XM_017019259 2 mRNA transcript variant X1 NC_000012 Reference
NM_001414005 1 mRNA transcript variant 5 NC_000012 Reference
NM_001111285 3 mRNA transcript variant 3 NC_000012 Reference
NM_001414006 1 mRNA transcript variant 6 NC_000012 Reference