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Nck1 depletion induces activation of the PI3K/Akt pathway by attenuating PTP1B protein expression
Hui Li1, Julie Dusseault2, Louise Larose3
1Department of Medicine, Polypeptide Laboratory, McGill University and The Research Institute of McGill University Health Centre, Montreal, QC, Canada. hui.li3@mail.mcgill.ca.
Background:
Activation of the PI3K/Akt pathway mediates crucial cellular functions regulated by receptor tyrosine kinases, such as cell growth, proliferation, survival and metabolism. Previously, we reported that the whole-body knockout of the Src homology domain-containing adaptor protein Nck1 improves overall glucose homeostasis and insulin-induced activation of the PI3K/Akt pathway in liver of obese mice. The aim of the current study is to elucidate the mechanism by which Nck1 depletion regulates hepatic insulin signaling.
Results:
Here, we demonstrate that Nck1 regulates the activation of the PI3K/Akt pathway in a protein tyrosine phosphatase 1B (PTP1B)-dependent mechanism. Indeed, depletion of Nck1 by siRNA in HepG2 cells enhances PI3K-dependent basal and growth factor-induced Akt activation. In accordance, primary hepatocytes isolated from Nck1 (-/-) mice also display enhanced Akt activation in response to insulin. Activation of the PI3K/Akt pathway in Nck1-depleted HepG2 cells relies on higher levels of tyrosine-phosphorylated proteins and correlates with decreased PTP1B levels. Interestingly, Nck1 and PTP1B in cells are found in a common molecular complex and their interaction is dependent on the SH3 domains of Nck1. Finally, Nck1 depletion in HepG2 cells neither affects PTP1B gene transcription nor PTP1B protein stability, suggesting that Nck1 modulates PTP1B expression at the translational level.
Conclusion:
Our study provides strong evidence supporting that the adaptor protein Nck1 interacts with PTP1B and also regulates PTP1B expression. In this manner, Nck1 plays a role in regulating the PI3K/Akt pathway.
Insights
The adaptor protein Nck1 regulates hepatic insulin signaling by interacting with protein tyrosine phosphatase 1B (PTP1B). Nck1 depletion enhances insulin-induced Akt activation, suggesting a role in metabolic regulation.
Area of Science:
- Cellular Biology
- Molecular Signaling
- Metabolism
Background:
- The PI3K/Akt pathway is crucial for cellular functions regulated by receptor tyrosine kinases.
- Nck1 knockout improves glucose homeostasis and hepatic insulin signaling in obese mice.
- The mechanism of Nck1's regulation of hepatic insulin signaling requires elucidation.
Purpose of the Study:
- To elucidate the mechanism by which Nck1 depletion regulates hepatic insulin signaling.
- To investigate the interaction between Nck1 and protein tyrosine phosphatase 1B (PTP1B).
Main Methods:
- siRNA-mediated Nck1 depletion in HepG2 cells.
- Primary hepatocyte isolation from Nck1 knockout mice.
- Analysis of Akt activation, tyrosine-phosphorylated proteins, and PTP1B levels.
- Co-immunoprecipitation to assess Nck1-PTP1B interaction.
Main Results:
- Nck1 depletion enhances PI3K-dependent Akt activation in HepG2 cells and primary hepatocytes.
- Nck1 depletion correlates with increased tyrosine-phosphorylated proteins and decreased PTP1B levels.
- Nck1 and PTP1B form a molecular complex, dependent on Nck1's SH3 domains.
- Nck1 modulates PTP1B expression at the translational level, not affecting gene transcription or protein stability.
Conclusions:
- Nck1 interacts with PTP1B and regulates its expression.
- Nck1 plays a significant role in modulating the PI3K/Akt pathway.
- Nck1 is a key regulator of hepatic insulin signaling through PTP1B.
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