» Articles » PMID: 2414672

Insulin Rapidly Stimulates Tyrosine Phosphorylation of a Mr-185,000 Protein in Intact Cells

Overview
Journal Nature
Specialty Science
Date 1985 Nov 14
PMID 2414672
Citations 156
Authors
Affiliations
Soon will be listed here.
Abstract

Phosphotyrosine-containing proteins are minor components of normal cells which appear to be associated primarily with the regulation of cellular metabolism and growth. The insulin receptor is a tyrosine-specific protein kinase, and one of the earliest detectable responses to insulin binding is activation of this kinase and autophosphorylation of its beta-subunit. Tyrosine autophosphorylation activates the phosphotransferase in the beta-subunit and increases its reactivity toward tyrosine phosphorylation of other substrates. When incubated in vitro with [gamma-32P]ATP and insulin, the purified insulin receptor phosphorylates various proteins on their tyrosine residues. However, so far no proteins other than the insulin receptor have been identified as undergoing tyrosine phosphorylation in response to insulin in an intact cell. Here, using anti-phosphotyrosine antibodies, we have identified a novel phosphotyrosine-containing protein of relative molecular mass (Mr) 185,000 (pp185) which appears during the initial response of hepatoma cells to insulin binding. In contrast to the insulin receptor, pp185 does not adhere to wheat-germ agglutininagarose or bind to anti-insulin receptor antibodies. Phosphorylation of pp185 is maximal within seconds after exposure of the cells to insulin and exhibits a dose-response curve similar to that of receptor autophosphorylation, suggesting that this protein represents the endogenous substrate for the insulin receptor kinase.

Citing Articles

Regulation and function of insulin and insulin-like growth factor receptor signalling.

Choi E, Duan C, Bai X Nat Rev Mol Cell Biol. 2025; .

PMID: 39930003 DOI: 10.1038/s41580-025-00826-3.


Phosphorylation Codes in IRS-1 and IRS-2 Are Associated with the Activation/Inhibition of Insulin Canonical Signaling Pathways.

Martinez Baez A, Ayala G, Pedroza-Saavedra A, Gonzalez-Sanchez H, Chihu Amparan L Curr Issues Mol Biol. 2024; 46(1):634-649.

PMID: 38248343 PMC: 10814773. DOI: 10.3390/cimb46010041.


Insulin Resistance and Hypertension: Mechanisms Involved and Modifying Factors for Effective Glucose Control.

Sakr H, Sirasanagandla S, Das S, Bima A, Elsamanoudy A Biomedicines. 2023; 11(8).

PMID: 37626767 PMC: 10452601. DOI: 10.3390/biomedicines11082271.


Does phosphatidylinositol 3-kinase play a role in insulin-induced outgrowth of pseudopodial cables in cultured cells derived from micromeres of sea urchin embryos?.

Kuno S, Yasumasu I Dev Growth Differ. 2023; 38(3):281-289.

PMID: 37281666 DOI: 10.1046/j.1440-169X.1996.t01-2-00007.x.


Human cytomegalovirus attenuates AKT activity by destabilizing insulin receptor substrate proteins.

Domma A, Goodrum F, Moorman N, Kamil J bioRxiv. 2023; .

PMID: 37131605 PMC: 10153195. DOI: 10.1101/2023.04.17.537203.