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Translocation and activation of AKT2 in response to stimulation by insulin
Y Mitsuuchi1, S W Johnson, S Moonblatt
1Department of Medical Oncology, Fox Chase Cancer Center, Philadelphia, Pennsylvania 19111, USA.
Abstract:
The AKT2 oncogene encodes a protein-serine/threonine kinase that was recently shown to be activated by a variety of growth factors. In addition, we previously showed that AKT2 is abundant in brown fat and skeletal muscle, tissues that are highly insulin responsive and that play a role in glucose metabolism. In this study, we demonstrate that AKT2 is activated in response to stimulation by insulin in a dose- and time-dependent manner in human ovarian carcinoma cells and that activation of AKT2 is abolished in cells pretreated with wortmannin, an inhibitor of phosphatidylinositol 3-kinase (PI 3-kinase). Activation of AKT2 is manifested by changes in its phosphorylation state. Immunofluorescence experiments demonstrate that AKT2 is translocated to the plasma membrane after insulin stimulation, and this translocation is abolished by wortmannin. Both wild-type AKT2 activated by insulin and constitutively active AKT2, which has been targeted to the membrane by the addition of a myristoylation signal, were found to inactivate glycogen synthase kinase-3 (GSK-3) in vitro. GSK-3 was not inactivated by a catalytically inactive AKT2 mutant. Collectively, these data indicate that activation of AKT2 by insulin is mediated by PI 3-kinase and that GSK-3 is a downstream target of AKT2, suggesting a potentially important role of AKT2 in glycogen synthesis and other GSK-3 signaling pathways.
Insights
Insulin activates the AKT2 protein kinase in ovarian cancer cells via PI 3-kinase signaling. Activated AKT2 then inactivates glycogen synthase kinase-3, suggesting a role in glucose metabolism and cancer.
Area of Science:
- Molecular Biology
- Cell Signaling
- Oncology
Background:
- AKT2 is a protein-serine/threonine kinase activated by growth factors.
- AKT2 is found in insulin-responsive tissues like brown fat and skeletal muscle.
- Insulin signaling is crucial for glucose metabolism.
Purpose of the Study:
- To investigate AKT2 activation by insulin in human ovarian carcinoma cells.
- To identify the signaling pathway mediating AKT2 activation.
- To determine downstream targets of activated AKT2.
Main Methods:
- Insulin stimulation assays in ovarian carcinoma cells.
- Wortmannin treatment to inhibit PI 3-kinase.
- Phosphorylation state analysis of AKT2.
- Immunofluorescence for AKT2 localization.
- In vitro kinase assays using wild-type and mutant AKT2.
Main Results:
- Insulin dose- and time-dependently activated AKT2 in ovarian carcinoma cells.
- AKT2 activation was dependent on PI 3-kinase activity and abolished by wortmannin.
- Insulin stimulation caused AKT2 translocation to the plasma membrane.
- Activated AKT2 inactivated glycogen synthase kinase-3 (GSK-3) in vitro.
Conclusions:
- Insulin-mediated AKT2 activation in ovarian cancer cells is dependent on PI 3-kinase.
- GSK-3 is a downstream target of AKT2.
- AKT2 may play a significant role in glycogen synthesis and other GSK-3 mediated pathways relevant to cancer.