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Stability of c-Myc protein differentiates Ras oncogene addiction and MAPK pathway dependency in Ras-mutant multiple
Abstract:
Multiple myeloma (MM) is a plasma cell malignancy that frequently harbors activating mutations in NRAS and KRAS oncogenes. Previous clinical trials targeting the Ras/MAPK oncogenic pathway with MEK inhibitors (MEKi) were met with limited efficacy, and newer generation of Ras inhibitors (RASi) have not been specifically evaluated in MM patients. To investigate the vulnerabilities of Ras-mutant MM to targeted therapies, we examined the sensitivity of a panel of human MM cell lines to the RASi RMC-6236 (daraxonrasib) and the MEKi trametinib. Although Ras-mutant MM cells are responsive to oncogenic Ras signaling and are sensitive to RAS inhibition, their sensitivity to MEK inhibition is heterogeneous. Mechanistic studies revealed that c-Myc protein is destabilized by MEK inhibition only in MEKi-sensitive MM cells but not in MEKi-resistant cells, and pharmacological and genetic stabilization of c-Myc is sufficient to confer MEKi resistance. In contrast, Ras inhibition reduced c-Myc protein across all MM cell lines tested, regardless of their dependency on the MAPK pathway, and c-Myc expression was insufficient to promote RASi resistance. Together, these findings demonstrate that c-Myc protein stability differentiates the response of Ras-mutant MM cells to Ras and MEK inhibition, and suggest that direct targeting of the Ras oncoprotein, rather than its downstream MAPK pathway, may present a more effective strategy.
Insights
Targeting Ras directly, not MEK, shows promise for multiple myeloma (MM) with Ras mutations. Ras inhibitors reduce c-Myc, unlike MEK inhibitors, suggesting a more effective therapeutic strategy for this plasma cell malignancy.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Multiple myeloma (MM) is a plasma cell cancer often driven by NRAS/KRAS mutations.
- Previous MEK inhibitor trials in MM showed limited success.
- Newer Ras inhibitors (RASi) require evaluation in MM.
Purpose of the Study:
- Investigate the efficacy of RASi (RMC-6236) and MEK inhibitors (trametinib) in Ras-mutant MM.
- Determine the role of c-Myc in differential response to RASi and MEKi.
- Identify optimal targeted therapy strategies for Ras-mutant MM.
Main Methods:
- Assessed sensitivity of MM cell lines to RMC-6236 and trametinib.
- Performed mechanistic studies on c-Myc protein stability.
- Utilized pharmacological and genetic approaches to modulate c-Myc.
Main Results:
- Ras-mutant MM cells are sensitive to RAS inhibition but show heterogeneous responses to MEK inhibition.
- MEK inhibition destabilizes c-Myc only in sensitive cells; c-Myc stabilization confers resistance.
- RAS inhibition reduces c-Myc across all tested MM cell lines, irrespective of MAPK dependency.
Conclusions:
- c-Myc protein stability is a key differentiator in Ras-mutant MM response to RASi vs. MEKi.
- Direct Ras inhibition may be a more effective strategy than targeting downstream MEK in Ras-mutant MM.
- Findings support RASi as a promising therapeutic avenue for specific MM subtypes.
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