PTEN reconstitution alters glioma responses to c-Met pathway inhibition
C Rory Goodwin1, Bachchu Lal, Sandra Ho
1The Hugo Moser Research Institute at Kennedy Krieger, Baltimore, Maryland, USA. rory@jhmi.edu
Abstract:
Mutations/deletions of the tumor-suppressor phosphatase and tensin homolog PTEN result in PI3K/Akt pathway hyperactivation and potentially alter oncogenic responses to targeted receptor tyrosine kinase inhibitors. We previously showed that hepatocyte growth factor (HGF):c-Met pathway inhibition decreases tumor growth and oncogenic signaling responses in PTEN-null/Met+ gliomas. Here, we use two tet-on PTENwt-inducible glioma cell lines and xenograft models to examine the influence of PTEN on oncogenic signaling responses to HGF:c-Met pathway inhibitors. Reconstitution of PTEN inhibited Akt by more than 80% and inhibited cell growth by approximately 70-75% in both cell lines in vitro. C-Met inhibition alone inhibited in-vitro cell growth by approximately 80-85% and the magnitude of growth inhibition was not altered by combining PTEN reconstitution with c-Met inhibition. Combining PTEN reconstitution with Met inhibition arrested a higher percentage of cells in G(1)/G(0) phase of the cell cycle when compared with either PTEN reconstitution or c-Met inhibition alone. Both PTEN reconstitution alone and inhibiting autocrine HGF:c-Met signaling alone, using anti-HGF mAb, robustly inhibited the growth of subcutaneous and intracranial glioma xenografts. Combining anti-HGF therapy with PTEN reconstitution did not significantly alter the magnitude of xenograft growth inhibition. Semiquantitative immunohistopathological analyses revealed that the inhibition of glioma xenograft angiogenesis and cell proliferation by anti-HGF mAb was greatest in conjunction with PTEN reconstitution. In contrast, xenograft cell apoptosis was greatest in response to anti-HGF therapy alone and PTEN reconstitution abrogated the apoptotic response to anti-HGF therapy. These results provide new insights into how PTEN modulates glioma responses to the inhibition of HGF:c-Met signaling and possibly other receptor tyrosine kinase pathways.
Insights
Restoring tumor suppressor PTEN in gliomas reduces cell growth and alters responses to HGF:c-Met inhibitors. PTEN reconstitution combined with c-Met inhibition affects cell cycle but not overall tumor growth inhibition.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling
Background:
- Mutations in the tumor suppressor gene PTEN lead to PI3K/Akt pathway hyperactivation, influencing cancer progression and response to targeted therapies.
- The hepatocyte growth factor (HGF):c-Met signaling pathway is implicated in glioma growth, and its inhibition has shown therapeutic potential.
Purpose of the Study:
- To investigate the role of PTEN in modulating glioma cell and xenograft responses to HGF:c-Met pathway inhibitors.
- To determine if restoring PTEN function affects oncogenic signaling and sensitivity to c-Met inhibitors.
Main Methods:
- Utilized PTEN-wildtype-inducible glioma cell lines and xenograft models.
- Administered PTEN reconstitution and c-Met inhibitors (including anti-HGF mAb).
- Assessed cell growth, cell cycle arrest, apoptosis, angiogenesis, and proliferation via immunohistopathology.
Main Results:
- PTEN reconstitution significantly inhibited Akt phosphorylation and glioma cell growth in vitro.
- c-Met inhibition alone strongly inhibited glioma cell growth; combining it with PTEN reconstitution did not enhance this inhibition but increased G1/G0 cell cycle arrest.
- Both PTEN reconstitution and c-Met inhibition individually inhibited xenograft growth; combination therapy did not significantly improve growth inhibition but enhanced anti-angiogenesis and anti-proliferation effects of anti-HGF therapy.
Conclusions:
- PTEN status critically influences glioma cell responses to HGF:c-Met pathway inhibition.
- While PTEN reconstitution alone or with c-Met inhibition does not enhance overall tumor growth reduction, it modulates specific cellular processes like cell cycle, angiogenesis, and proliferation.
- PTEN reconstitution abrogated the apoptotic response to anti-HGF therapy, highlighting complex interactions in targeted cancer therapy.

