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Hepatic expression of ErbB3 is repressed by insulin in a pathway sensitive to PI-3 kinase inhibitors
R S Carver1, P M Mathew, W E Russell
1Department of Cell Biology, Vanderbilt University, Nashville, Tennessee 37232, USA.
Abstract:
ErbB3 is an epidermal growth factor receptor-related type I tyrosine kinase receptor capable, in conjunction with ErbB2 or epidermal growth factor receptor, of transmitting proliferative and differentiative signals in a variety of cell types. We previously showed that ErbB3 messenger RNA and protein increase in cultured hepatocytes during the first 12 h in culture, as does the binding of heregulin beta1, a ligand for ErbB3. Insulin inhibits the increase in heregulin beta1 binding, as well as the increase in ErbB3 messenger RNA and protein. Two models of insulin deficiency in vivo (diabetes and fasting) demonstrated elevated levels of hepatic ErbB3 protein, strengthening the relevance of our observations in vitro. Using chemical activators or antagonists, we sought to identify the signaling pathways that link insulin to ErbB3 expression. The PI-3 kinase inhibitors, wortmannin and LY294002, completely blocked the inhibition of ErbB3 protein expression by insulin, suggesting a role for PI-3 kinase in the regulation of this growth factor receptor. Rapamycin, an inhibitor of p70 S6 kinase, an enzyme downstream of PI-3 kinase, failed to block the effect of insulin on ErbB3 expression. These results suggest a complex regulatory paradign for ErbB3 that includes PI-3 kinase and may be linked, via insulin, to the metabolic status of the animal.
Insights
Insulin regulates ErbB3 protein levels in liver cells, with this regulation involving phosphoinositide 3-kinase (PI-3 kinase). This finding links insulin signaling to ErbB3 expression and the animal
Area of Science:
- Cellular signaling pathways
- Molecular biology
- Hepatocyte function
Background:
- ErbB3 is a tyrosine kinase receptor involved in cell proliferation and differentiation.
- ErbB3 and its ligand heregulin beta1 increase in cultured hepatocytes.
- Insulin inhibits these increases and ErbB3 levels are elevated in insulin-deficient states in vivo.
Purpose of the Study:
- To identify signaling pathways linking insulin to ErbB3 expression.
- To investigate the role of PI-3 kinase in insulin-mediated regulation of ErbB3.
Main Methods:
- In vitro studies using cultured hepatocytes.
- In vivo models of insulin deficiency (diabetes and fasting).
- Treatment with chemical activators/antagonists, including PI-3 kinase inhibitors (wortmannin, LY294002) and p70 S6 kinase inhibitor (rapamycin).
Main Results:
- Insulin inhibits increases in ErbB3 mRNA and protein, and heregulin beta1 binding in hepatocytes.
- Hepatic ErbB3 protein levels are elevated in diabetic and fasted animals.
- PI-3 kinase inhibitors blocked insulin's effect on ErbB3 protein expression, while p70 S6 kinase inhibition did not.
Conclusions:
- Insulin signaling, mediated by PI-3 kinase, plays a role in regulating hepatic ErbB3 protein expression.
- This regulation is linked to the animal's metabolic status.
- ErbB3 regulation involves a complex pathway potentially including PI-3 kinase but not p70 S6 kinase.
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