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Multipoint targeting of the PI3K/mTOR pathway in mesothelioma
11] Zhejiang Provincial Key Laboratory of Applied Enzymology, Department of Biotechnology and Biomedicine, Yangtze Delta Region Institute of Tsinghua University, Jiaxing, China [2] Department of Bioengineering, College of Biology and Chemical Engineering, Jiaxing University, Jiaxing, China.
Background:
Mesothelioma is a notoriously chemotherapy-resistant neoplasm, as is evident in the dismal overall survival for patients with those of asbestos-associated disease. We previously demonstrated co-activation of multiple receptor tyrosine kinases (RTKs), including epidermal growth factor receptor (EGFR), MET, and AXL in mesothelioma cell lines, suggesting that these kinases could serve as novel therapeutic targets. Although clinical trials have not shown activity for EGFR inhibitors in mesothelioma, concurrent inhibition of various activated RTKs has pro-apoptotic and anti-proliferative effects in mesothelioma cell lines. Thus, we hypothesised that a coordinated network of multi-RTK activation contributes to mesothelioma tumorigenesis.
Methods:
Activation of PI3K/AKT/mTOR, Raf/MAPK, and co-activation of RTKs were evaluated in mesotheliomas. Effects of RTK and downstream inhibitors/shRNAs were assessed by measuring mesothelioma cell viability/growth, apoptosis, activation of signalling intermediates, expression of cell-cycle checkpoints, and cell-cycle alterations.
Results:
We demonstrate activation of the PI3K/AKT/p70S6K and RAF/MEK/MAPK pathways in mesothelioma, but not in non-neoplastic mesothelial cells. The AKT activation, but not MAPK activation, was dependent on coordinated activation of RTKs EGFR, MET, and AXL. In addition, PI3K/AKT/mTOR pathway inhibition recapitulated the anti-proliferative effects of concurrent inhibition of EGFR, MET, and AXL. Dual targeting of PI3K/mTOR by BEZ235 or a combination of RAD001 and AKT knockdown had a greater effect on mesothelioma proliferation and viability than inhibition of individual activated RTKs or downstream signalling intermediates. Inhibition of PI3K/AKT was also associated with MDM2-p53 cell-cycle regulation.
Conclusions:
These findings show that PI3K/AKT/mTOR is a crucial survival pathway downstream of multiple activated RTKs in mesothelioma, underscoring that PI3K/mTOR is a compelling target for therapeutic intervention.
Insights
Chemotherapy-resistant mesothelioma relies on PI3K/AKT/mTOR signaling activated by multiple receptor tyrosine kinases (RTKs). Inhibiting PI3K/mTOR shows promise for treating this asbestos-associated cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling
Background:
- Mesothelioma is a difficult-to-treat cancer with poor survival rates, often linked to asbestos exposure.
- Multiple receptor tyrosine kinases (RTKs), including EGFR, MET, and AXL, are co-activated in mesothelioma.
- While single RTK inhibitors have shown limited success, combined RTK inhibition exhibits anti-cancer effects.
Purpose of the Study:
- To investigate the role of RTK co-activation and downstream signaling pathways in mesothelioma.
- To identify potential therapeutic targets for mesothelioma treatment.
Main Methods:
- Assessed activation of PI3K/AKT/mTOR and Raf/MAPK pathways in mesothelioma.
- Evaluated the effects of RTK and downstream pathway inhibitors/shRNAs on mesothelioma cell viability, apoptosis, and cell cycle.
- Investigated the dependence of AKT activation on RTKs (EGFR, MET, AXL).
Main Results:
- PI3K/AKT/p70S6K and RAF/MEK/MAPK pathways are activated in mesothelioma but not normal mesothelial cells.
- AKT activation is dependent on co-activated EGFR, MET, and AXL, while MAPK activation is not.
- PI3K/AKT/mTOR pathway inhibition mimicked the effects of combined RTK inhibition.
- Dual PI3K/mTOR targeting demonstrated superior anti-proliferative and anti-viability effects compared to single-target inhibition.
- PI3K/AKT inhibition correlated with MDM2-p53 mediated cell-cycle regulation.
Conclusions:
- The PI3K/AKT/mTOR pathway is essential for mesothelioma cell survival, downstream of multiple activated RTKs.
- PI3K/mTOR represents a promising therapeutic target for mesothelioma intervention.
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