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MNK1 pathway activity maintains protein synthesis in rapalog-treated gliomas
Abstract:
High levels of mammalian target of rapamycin complex 1 (mTORC1) activity in malignant gliomas promote tumor progression, suggesting that targeting mTORC1 has potential as a therapeutic strategy. Remarkably, clinical trials in patients with glioma revealed that rapamycin analogs (rapalogs) have limited efficacy, indicating activation of resistance mechanisms. Targeted depletion of MAPK-interacting Ser/Thr kinase 1 (MNK1) sensitizes glioma cells to the mTORC1 inhibitor rapamycin through an indistinct mechanism. Here, we analyzed how MNK1 and mTORC1 signaling pathways regulate the assembly of translation initiation complexes, using the cap analog m7GTP to enrich for initiation complexes in glioma cells followed by mass spectrometry-based quantitative proteomics. Association of eukaryotic translation initiation factor 4E (eIF4E) with eIF4E-binding protein 1 (4EBP1) was regulated by the mTORC1 pathway, whereas pharmacological blocking of MNK activity by CGP57380 or MNK1 knockdown, along with mTORC1 inhibition by RAD001, increased 4EBP1 binding to eIF4E. Furthermore, combined MNK1 and mTORC1 inhibition profoundly inhibited 4EBP1 phosphorylation at Ser65, protein synthesis and proliferation in glioma cells, and reduced tumor growth in an orthotopic glioblastoma (GBM) mouse model. Immunohistochemical analysis of GBM samples revealed increased 4EBP1 phosphorylation. Taken together, our data indicate that rapalog-activated MNK1 signaling promotes glioma growth through regulation of 4EBP1 and indicate a molecular cross-talk between the mTORC1 and MNK1 pathways that has potential to be exploited therapeutically.
Insights
Targeting MAPK-interacting Ser/Thr kinase 1 (MNK1) and mammalian target of rapamycin complex 1 (mTORC1) pathways together inhibits glioma growth. Combined inhibition reduces protein synthesis and proliferation by regulating 4EBP1, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Malignant gliomas exhibit high mTORC1 activity, driving tumor progression.
- Clinical trials with mTORC1 inhibitors (rapalogs) show limited efficacy in glioma patients due to resistance mechanisms.
- MAPK-interacting Ser/Thr kinase 1 (MNK1) depletion sensitizes glioma cells to mTORC1 inhibition via an unclear mechanism.
Purpose of the Study:
- To elucidate the regulatory roles of MNK1 and mTORC1 signaling in translation initiation complex assembly in glioma cells.
- To investigate the molecular mechanisms underlying MNK1-mediated sensitization to mTORC1 inhibitors.
Main Methods:
- Utilized cap analog m7GTP to enrich translation initiation complexes in glioma cells.
- Employed mass spectrometry-based quantitative proteomics to analyze protein associations.
- Investigated the effects of MNK1 inhibition (CGP57380, knockdown) and mTORC1 inhibition (RAD001) on protein synthesis and cell proliferation.
Main Results:
- mTORC1 pathway regulates eukaryotic translation initiation factor 4E (eIF4E) and 4EBP1 association.
- Combined MNK1 and mTORC1 inhibition significantly reduced 4EBP1 phosphorylation at Ser65.
- Simultaneous inhibition profoundly suppressed protein synthesis, glioma cell proliferation, and tumor growth in a glioblastoma mouse model.
Conclusions:
- Rapalog-activated MNK1 signaling promotes glioma growth by modulating 4EBP1.
- A molecular crosstalk exists between mTORC1 and MNK1 pathways in gliomas.
- Combined inhibition of MNK1 and mTORC1 presents a promising therapeutic strategy for malignant gliomas.
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