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Combined c-Met/Trk Inhibition Overcomes Resistance to CDK4/6 Inhibitors in Glioblastoma
Inan Olmez1, Ying Zhang2, Laryssa Manigat3
1Department of Neurology, University of Virginia, Charlottesville, Virginia. io7u@virginia.edu.
Abstract:
Glioblastoma (GBM) is the most common primary brain malignancy and carries an extremely poor prognosis. Recent molecular studies revealed the CDK4/6-Rb-E2F axis and receptor tyrosine kinase (RTK) signaling to be deregulated in most GBM, creating an opportunity to develop more effective therapies by targeting both pathways. Using a phospho-RTK protein array, we found that both c-Met and TrkA-B pathways were significantly activated upon CDK4/6 inhibition in GBM cells. We therefore investigated the efficacy of combined CDK4/6 and c-Met/TrkA-B inhibition against GBM. We show that both c-Met and TrkA-B pathways transactivate each other, and targeting both pathways simultaneously results in more efficient pathway suppression. Mechanistically, inhibition of CDK4/6 drove NF-κB-mediated upregulation of hepatocyte growth factor, brain-derived neurotrophic factor, and nerve growth factor that in turn activated both c-Met and TrkA-B pathways. Combining the CDK4/6 inhibitor abemaciclib with the c-Met/Trk inhibitor altiratinib or the corresponding siRNAs induced apoptosis, leading to significant synergy against GBM. Collectively, these findings demonstrate that the activation of c-Met/TrkA-B pathways is a novel mechanism involved in therapeutic resistance of GBM to CDK4/6 inhibition and that dual inhibition of c-Met/Trk with CDK4/6 should be considered in future clinical trials.Significance: CDK4/6 inhibition in glioblastoma activates the c-Met and TrkA-B pathways mediated by NF-κB and can be reversed by a dual c-Met/Trk inhibitor. Cancer Res; 78(15); 4360-9. ©2018 AACR.
Insights
Targeting glioblastoma (GBM) with CDK4/6 inhibitors activates c-Met and TrkA-B pathways. Combining CDK4/6 inhibitors with c-Met/Trk inhibitors offers a synergistic approach to overcome therapeutic resistance in GBM.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Glioblastoma (GBM) is an aggressive brain cancer with poor prognosis.
- The CDK4/6-Rb-E2F axis and receptor tyrosine kinase (RTK) signaling are frequently deregulated in GBM.
- Targeting these pathways offers potential therapeutic strategies.
Purpose of the Study:
- To investigate the efficacy of combined CDK4/6 and c-Met/TrkA-B inhibition in GBM.
- To elucidate the mechanism of therapeutic resistance to CDK4/6 inhibition in GBM.
Main Methods:
- Phospho-RTK protein array analysis to identify activated pathways upon CDK4/6 inhibition.
- In vitro studies using GBM cells with specific inhibitors (abemaciclib, altiratinib) and siRNAs.
- Assessment of pathway activation, apoptosis, and synergistic effects.
Main Results:
- CDK4/6 inhibition in GBM cells activates both c-Met and TrkA-B pathways.
- These pathways mutually transactivate each other, and simultaneous inhibition enhances pathway suppression.
- CDK4/6 inhibition induces NF-κB-mediated upregulation of growth factors, activating c-Met and TrkA-B.
- Combined abemaciclib and altiratinib treatment demonstrated significant synergy, inducing apoptosis in GBM cells.
Conclusions:
- Activation of c-Met/TrkA-B pathways is a novel mechanism of resistance to CDK4/6 inhibitors in GBM.
- Dual inhibition of c-Met/Trk and CDK4/6 pathways shows promising synergistic effects against GBM.
- This combination strategy warrants consideration for future clinical trials in glioblastoma treatment.
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