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Interactions between PTEN and the c-Met pathway in glioblastoma and implications for therapy
Yunqing Li1, Fadila Guessous, Charles DiPierro
1Department of Neurology, University of Virginia, Charlottesville, VA 22908, USA.
Abstract:
The tyrosine kinase receptor c-Met and its ligand hepatocyte growth factor (HGF) are frequently overexpressed and the tumor suppressor PTEN is often mutated in glioblastoma. Because PTEN can interact with c-Met-dependent signaling, we studied the effects of PTEN on c-Met-induced malignancy and associated molecular events and assessed the potential therapeutic value of combining PTEN restoration approaches with HGF/c-Met inhibition. We studied the effects of c-Met activation on cell proliferation, cell cycle progression, cell migration, cell invasion, and associated molecular events in the settings of restored or inhibited PTEN expression in glioblastoma cells. We also assessed the experimental therapeutic effects of combining anti-HGF/c-Met approaches with PTEN restoration or mTOR inhibition. PTEN significantly inhibited HGF-induced proliferation, cell cycle progression, migration, and invasion of glioblastoma cells. PTEN attenuated HGF-induced changes of signal transduction proteins Akt, GSK-3, JNK, and mTOR as well as cell cycle regulatory proteins p27, cyclin E, and E2F-1. Combining PTEN restoration to PTEN-null glioblastoma cells with c-Met and HGF inhibition additively inhibited tumor cell proliferation and cell cycle progression. Similarly, combining a monoclonal anti-HGF antibody (L2G7) with the mTOR inhibitor rapamycin had additive inhibitory effects on glioblastoma cell proliferation. Systemic in vivo delivery of L2G7 and PTEN restoration as well as systemic in vivo deliveries of L2G7 and rapamycin additively inhibited intracranial glioma xenograft growth. These preclinical studies show for the first time that PTEN loss amplifies c-Met-induced glioblastoma malignancy and suggest that combining anti-HGF/c-Met approaches with PTEN restoration or mTOR inhibition is worth testing in a clinical setting.
Insights
Restoring PTEN tumor suppressor function inhibits glioblastoma growth. Combining PTEN restoration or mTOR inhibition with c-Met/HGF targeting shows promise for glioblastoma treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Glioblastoma often exhibits c-Met receptor tyrosine kinase and hepatocyte growth factor (HGF) overexpression.
- Mutations in the PTEN tumor suppressor gene are common in glioblastoma.
- PTEN is known to interact with c-Met signaling pathways.
Purpose of the Study:
- To investigate the impact of PTEN on c-Met-driven glioblastoma malignancy.
- To evaluate the therapeutic potential of combining PTEN restoration with HGF/c-Met inhibition.
Main Methods:
- Studied effects of c-Met activation on glioblastoma cell proliferation, cell cycle, migration, and invasion with altered PTEN expression.
- Assessed therapeutic effects of combining anti-HGF/c-Met strategies with PTEN restoration or mTOR inhibition.
- Utilized in vitro glioblastoma cell models and in vivo intracranial glioma xenografts.
Main Results:
- PTEN significantly inhibited HGF-induced glioblastoma cell proliferation, cell cycle progression, migration, and invasion.
- PTEN attenuated HGF-induced signaling through Akt, mTOR, and cell cycle regulators (p27, cyclin E, E2F-1).
- Combined PTEN restoration with c-Met/HGF inhibition, or anti-HGF therapy with mTOR inhibition, showed additive inhibitory effects on tumor growth in vitro and in vivo.
Conclusions:
- PTEN loss exacerbates c-Met-mediated glioblastoma malignancy.
- Combination therapies involving HGF/c-Met inhibition with PTEN restoration or mTOR inhibition warrant clinical investigation for glioblastoma treatment.
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