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Activation of Ras by insulin in 3T3 L1 cells does not involve GTPase-activating protein phosphorylation
A Porras1, A R Nebreda, M Benito
1Laboratory of Cellular and Molecular Biology, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892.
Abstract:
Insulin-induced differentiation of 3T3 L1 cells to adipocytes can be mimicked by the expression of transfected ras oncogenes but not of the tyrosine-kinase oncogenes src and trk. Expression of two different transfected, dominant inhibitory ras mutants resulted in significant inhibition of insulin-induced differentiation, suggesting that endogenous Ras proteins are mediators of insulin signaling in these cells. Exposure of untransfected 3T3 L1 cells to insulin resulted in significant formation of the active Ras.GTP complex, at levels comparable with those resulting from exposure to platelet-derived growth factor. However, whereas exposure of the same cells to platelet-derived growth factor resulted in significant tyrosine phosphorylation of the p21ras GTPase-activating protein (GAP), insulin-treated cells did not show any detectable levels of de novo GAP tyrosine phosphorylation. Interestingly, insulin caused tyrosine phosphorylation of the p62 polypeptide coprecipitated with GAP by anti-GAP antibodies. Insulin-induced activation of cytosolic MAP kinase activity in untransfected 3T3 L1 cells was also mimicked by Ras expression (in the absence of insulin) in the same cells transfected with an inducible ras construct. These results confirm that Ras proteins participate in insulin signaling pathways in these mammalian cells and indicate that activation of cytosolic MAP kinases is an early event occurring downstream from Ras activation. However, tyrosine phosphorylation of GAP appears not to be a significant upstream regulatory event in the activation of Ras by insulin.
Insights
Ras proteins mediate insulin signaling in 3T3 L1 cells, driving adipocyte differentiation. Insulin activates Ras and downstream MAP kinases, but not GAP tyrosine phosphorylation, revealing key signaling pathways.
Area of Science:
- Cellular Biology
- Molecular Signaling
- Signal Transduction
Background:
- Insulin is crucial for adipocyte differentiation in 3T3 L1 cells.
- The precise molecular mechanisms of insulin signaling remain under investigation.
- Ras proteins are known regulators of cellular processes.
Purpose of the Study:
- To investigate the role of Ras proteins in insulin-induced adipocyte differentiation.
- To elucidate the upstream and downstream signaling events activated by insulin in 3T3 L1 cells.
Main Methods:
- Utilized transfected ras oncogenes and dominant inhibitory ras mutants in 3T3 L1 cells.
- Measured Ras.GTP complex formation and GTPase-activating protein (GAP) tyrosine phosphorylation.
- Assessed insulin-induced activation of MAP kinase activity.
Main Results:
- Ras oncogene expression mimicked insulin-induced differentiation, while dominant inhibitory Ras mutants blocked it.
- Insulin treatment activated Ras.GTP complex formation and MAP kinase activity.
- Insulin did not induce detectable GAP tyrosine phosphorylation but caused p62 polypeptide phosphorylation associated with GAP.
Conclusions:
- Endogenous Ras proteins are essential mediators of insulin signaling in 3T3 L1 adipocyte differentiation.
- Activation of MAP kinases is an early downstream event following Ras activation by insulin.
- GAP tyrosine phosphorylation is not a significant upstream regulator of insulin-induced Ras activation.