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Targeting the MEK/ERK Pathway to Suppress P-Glycoprotein and Reverse Carfilzomib Resistance in Multiple Myeloma
Lidia A Laletina1, Anastasiia I Cherkasova1, Ekaterina A Scherbakova1
1N.N. Blokhin National Medical Research Center of Oncology, Kashirskoe Shosse 24, 115478 Moscow, Russia.
Abstract:
Carfilzomib (CFZ) is a cornerstone in the treatment of relapsed multiple myeloma (MM). However, its efficacy is limited by resistance mediated by the overexpression of the ABC-transporter P-glycoprotein (P-gp). The signaling pathways driving the emergence of P-gp in MM remain unclear. To investigate this, we generated CFZ-resistant AMO-1/CFZ cells with P-gp overexpression by long-term selection. RNA sequencing of control AMO-1 and AMO-1/CFZ, sorted into two subpopulations, P-gp HIGH and P-gp LOW, implicated the Ras/MEK/ERK pathway as the most likely signaling cascade involved in P-gp upregulation. We therefore evaluated two clinically used MAPK pathway inhibitors, cobimetinib and ulixertinib, for their ability to re-sensitize AMO-1/CFZ cells to CFZ. Co-administration at non-toxic concentrations enhanced sensitivity 5-fold with cobimetinib and 17-fold with ulixertinib. Analysis of the combined MTT assay results, rhodamine efflux experiments, molecular docking, and Western blotting revealed distinct actions. Ulixertinib primarily functions as a potent direct P-gp inhibitor. Conversely, non-toxic concentrations of cobimetinib sensitizes cells by suppressing MAPK signaling, though it also exhibits P-gp inhibition at higher concentrations. At the IC50 concentration, both inhibitors reduced P-gp expression. In conclusion, combining CFZ with MAPK pathway inhibitors like cobimetinib or ulixertinib represents a promising strategy to overcome P-gp-mediated resistance in MM.
Insights
Carfilzomib resistance in multiple myeloma can be overcome by targeting the Ras/MEK/ERK pathway. Inhibitors like cobimetinib and ulixertinib re-sensitize cancer cells to carfilzomib by reducing P-glycoprotein expression and activity.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Carfilzomib (CFZ) is a key treatment for relapsed multiple myeloma (MM).
- Resistance to CFZ, often due to P-glycoprotein (P-gp) overexpression, limits its effectiveness.
- The signaling pathways driving P-gp upregulation in MM are not fully understood.
Purpose of the Study:
- To investigate the signaling pathways involved in P-gp overexpression in MM.
- To evaluate the efficacy of MAPK pathway inhibitors in overcoming CFZ resistance.
Main Methods:
- Generated CFZ-resistant AMO-1/CFZ cells via long-term selection.
- Utilized RNA sequencing to identify key signaling pathways.
- Assessed the effect of cobimetinib and ulixertinib on CFZ sensitivity using MTT assays, rhodamine efflux, molecular docking, and Western blotting.
Main Results:
- RNA sequencing implicated the Ras/MEK/ERK pathway in P-gp upregulation.
- Co-administration of CFZ with cobimetinib or ulixertinib significantly enhanced CFZ efficacy (5-fold and 17-fold, respectively).
- Ulixertinib acted as a direct P-gp inhibitor, while cobimetinib suppressed MAPK signaling and P-gp expression.
Conclusions:
- Combining carfilzomib with MAPK pathway inhibitors is a promising strategy to overcome P-gp-mediated resistance in multiple myeloma.
- Both cobimetinib and ulixertinib demonstrate potential in re-sensitizing MM cells to carfilzomib.
- Targeting the MAPK pathway offers a novel approach to enhance efficacy of existing MM therapies.
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