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Mechanism of beta 1-integrin-mediated hepatoma cell growth involves p27 and S-phase kinase-associated protein 2
Hao Zhang1, Iwata Ozaki, Toshihiko Mizuta
1Division of Hepatology and Metabolism, Department of Internal Medicine, Saga Medical School, Nabeshima, Saga, Japan.
Abstract:
Although cooperative interactions between growth factors and integrins, cell surface receptors for extracellular matrices (ECM), have been reported, little is known about the interaction between hepatocyte growth factor (HGF) and integrin in hepatoma cells. We investigated the effects and mechanisms of integrin on the proliferation of hepatoma cells regulated by HGF. Human HepG2 hepatoma cells stably transfected with beta 1-integrin were treated with HGF and compared with parental and mock-transfected control cells. Cell proliferation and expression of cyclin-dependent kinase (Cdk) inhibitors and S-phase kinase-associated protein 2 (Skp2), were investigated. HGF dose-dependently suppressed the proliferation of parental and mock-transfected HepG2 cells. However, cells overexpressing beta 1-integrin exhibited increased proliferation in response to HGF. Although HGF increased p27 and decreased Skp2 expression in the parental and mock-transfected cells, the p27 and Skp2 levels in cells overexpressing beta 1-integrin were not altered by HGF. Interestingly, HepG2 cells overexpressing beta 1-integrin showed increased Skp2 expression. Furthermore, HGF did not reduce the proliferation of HepG2 cells transfected with antisense p27 or sense Skp2. Thus, HGF suppresses HepG2 cell proliferation by directly increasing p27 expression and indirectly decreasing Skp2 expression, and beta 1-integrin modulates the responsiveness of hepatoma cells to HGF via a p27-dependent manner by increasing Skp2. In conclusion, these results strongly suggest that integrin-mediated signals from the ECM can modulate growth factor-mediated signals in hepatoma cells, and may contribute to the growth of hepatocellular carcinomas.
Insights
Hepatocyte growth factor (HGF) normally suppresses hepatoma cell growth, but beta 1-integrin overexpression reverses this effect. Integrins modulate growth factor signaling, potentially driving hepatocellular carcinoma growth.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Integrins are cell surface receptors for extracellular matrices (ECM).
- Cooperative interactions between growth factors and integrins are known, but their specific roles in hepatoma cells are unclear.
- Hepatocyte growth factor (HGF) is a key regulator of liver cell growth and function.
Purpose of the Study:
- To investigate the effects and mechanisms of integrin on hepatoma cell proliferation regulated by HGF.
- To elucidate how beta 1-integrin influences the cellular response to HGF in HepG2 hepatoma cells.
- To determine the role of cyclin-dependent kinase (Cdk) inhibitors and Skp2 in HGF- and integrin-mediated proliferation.
Main Methods:
- Human HepG2 hepatoma cells were stably transfected with beta 1-integrin.
- Cells were treated with HGF and compared to parental and mock-transfected controls.
- Cell proliferation, Cdk inhibitor (p27), and Skp2 expression levels were analyzed.
Main Results:
- HGF dose-dependently suppressed proliferation in parental and mock-transfected cells.
- Beta 1-integrin overexpression led to increased proliferation in response to HGF.
- HGF altered p27 and Skp2 expression in parental cells, but not in beta 1-integrin overexpressing cells, which showed increased Skp2.
- HGF's antiproliferative effect was abolished by antisense p27 or sense Skp2 transfection.
Conclusions:
- HGF suppresses hepatoma cell proliferation via p27 and Skp2 regulation.
- Beta 1-integrin modulates hepatoma cell responsiveness to HGF through a p27-dependent mechanism involving Skp2.
- Integrin-mediated signals can influence growth factor signaling, potentially contributing to hepatocellular carcinoma development.
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