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Journal Article | Research Support, U.S. Gov't, P.H.S.

Association between GRB2/Sos and insulin receptor substrate 1 is not sufficient for activation of extracellular signal-regulated kinases by interleukin-4: implications for Ras activation by insulin.

W Pruett, Y Yuan, E Rose, A G Batzer, N Harada, E Y Skolnik
W Pruett
Skirball Institute for Biomolecular Medicine, Department of Pharmacology, New York University Medical Center, New York 10016.
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Y Yuan
Skirball Institute for Biomolecular Medicine, Department of Pharmacology, New York University Medical Center, New York 10016.
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E Rose
Skirball Institute for Biomolecular Medicine, Department of Pharmacology, New York University Medical Center, New York 10016.
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A G Batzer
Skirball Institute for Biomolecular Medicine, Department of Pharmacology, New York University Medical Center, New York 10016.
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N Harada
Skirball Institute for Biomolecular Medicine, Department of Pharmacology, New York University Medical Center, New York 10016.
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E Y Skolnik
Skirball Institute for Biomolecular Medicine, Department of Pharmacology, New York University Medical Center, New York 10016.
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DOI: 10.1128/MCB.15.3.1778
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ABSTRACT

Insulin receptor substrate 1 (IRS-1) mediates the activation of a variety of signaling pathways by the insulin and insulin-like growth factor 1 receptors by serving as a docking protein for signaling molecules with SH2 domains. We and others have shown that in response to insulin stimulation IRS-1 binds GRB2/Sos and have proposed that this interaction is important in mediating Ras activation by the insulin receptor. Recently, it has been shown that the interleukin (IL)-4 receptor also phosphorylates IRS-1 and an IRS-1-related molecule, 4PS. Unlike insulin, however, IL-4 fails to activate Ras, extracellular signal-regulated kinases (ERKs), or mitogen-activated protein kinases. We have reconstituted the IL-4 receptor into an insulin-responsive L6 myoblast cell line and have shown that IRS-1 is tyrosine phosphorylated to similar degrees in response to insulin and IL-4 stimulation in this cell line. In agreement with previous findings, IL-4 failed to activate the ERKs in this cell line or to stimulate DNA synthesis, whereas the same responses were activated by insulin. Surprisingly, IL-4's failure to activate ERKs was not due to a failure to stimulate the association of tyrosine-phosphorylated IRS-1 with GRB2/Sos; the amounts of GRB2/Sos associated with IRS-1 were similar in insulin- and IL-4-stimulated cells. Moreover, the amounts of phosphatidylinositol 3-kinase activity associated with IRS-1 were similar in insulin- and IL-4-stimulated cells. In contrast to insulin, however, IL-4 failed to induce tyrosine phosphorylation of Shc or association of Shc with GRB2. Thus, ERK activation correlates with Shc tyrosine phosphorylation and formation of an Shc/GRB2 complex. Thus, ERK activation correlates with Shc tyrosine phosphorylation and formation of an Shc/GRB2 complex. Previous studies have indicated that activation of ERks in this cell line is dependent upon Ras since a dominant-negative Ras (Asn-17) blocks ERK activation by insulin. Our findings, taken in the context of previous work, suggest that binding of GRB2/Sos to Shc may be the predominant mechanism whereby insulin as well as cytokine receptors activate Ras.

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Association between GRB2/Sos and insulin receptor substrate 1 is not sufficient for activation of extracellular signal-regulated kinases by interleukin-4: implications for Ras activation by insulin.
W Pruett, Y Yuan, E Rose, A G Batzer, N Harada, E Y Skolnik
Molecular and Cellular Biology Mar 1995, 15 (3) 1778-1785; DOI: 10.1128/MCB.15.3.1778

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Association between GRB2/Sos and insulin receptor substrate 1 is not sufficient for activation of extracellular signal-regulated kinases by interleukin-4: implications for Ras activation by insulin.
W Pruett, Y Yuan, E Rose, A G Batzer, N Harada, E Y Skolnik
Molecular and Cellular Biology Mar 1995, 15 (3) 1778-1785; DOI: 10.1128/MCB.15.3.1778
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