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Updated: Mar 24, 2026

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
MIG6 Is MEK Regulated and Affects EGF-Induced Migration in Mutant NRAS Melanoma
Ha Linh Vu1, Sheera Rosenbaum1, Claudia Capparelli1
1Department of Cancer Biology and Sidney Kimmel Cancer Center, Thomas Jefferson University Philadelphia, Pennsylvania, USA.
Abstract:
Activating mutations in neuroblastoma RAS viral oncogene homolog (NRAS) are frequent driver events in cutaneous melanoma. NRAS is a guanosine triphosphate-binding protein whose most well-characterized downstream effector is RAF, leading to activation of mitogen-activated protein kinase (MEK)-extracellular signal-regulated protein kinase 1/2 signaling. Although there are no Food and Drug Administration-approved targeted therapies for melanoma patients with a primary mutation in NRAS, one form of targeted therapy that has been explored is MEK inhibition. In clinical trials, MEK inhibitors have shown disappointing efficacy in mutant NRAS patients, the reasons for which are unclear. To explore the effects of MEK inhibitors in mutant NRAS melanoma, we used a high-throughput reverse-phase protein array platform to identify signaling alterations. Reverse-phase protein array analysis of phospho-proteomic changes in mutant NRAS melanoma in response to trametinib indicated a compensatory increase in v-akt murine thymoma viral oncogene homolog signaling and decreased expression of mitogen-inducible gene 6 (MIG6), a negative regulator of epidermal growth factor receptor/v-erb-b2 erythroblastic leukemia viral oncogene homolog receptors. MIG6 expression did not alter the growth or survival properties of mutant NRAS melanoma cells. Rather, we identified a role for MIG6 as a negative regulator of epidermal growth factor-induced signaling and cell migration and invasion. In MEK-inhibited cells, further depletion of MIG6 increased migration and invasion, whereas MIG6 expression decreased these properties. Therefore, a decrease in MIG6 may promote the migration and invasiveness of MEK-inhibited mutant NRAS melanoma, especially in response to epidermal growth factor stimulation.
Insights
Activating NRAS mutations drive melanoma. MEK inhibitors show limited efficacy due to compensatory signaling and decreased MIG6, promoting cancer cell migration and invasion.
Area of Science:
- Oncology
- Molecular Biology
- Dermatology
Background:
- Activating mutations in neuroblastoma RAS viral oncogene homolog (NRAS) are common in cutaneous melanoma.
- MEK inhibitors are explored for NRAS-mutant melanoma but show disappointing efficacy.
- The underlying mechanisms for MEK inhibitor failure in NRAS-mutant melanoma are not fully understood.
Purpose of the Study:
- To investigate signaling alterations in NRAS-mutant melanoma treated with MEK inhibitors.
- To identify mechanisms contributing to the limited efficacy of MEK inhibitors in this context.
- To explore the role of mitogen-inducible gene 6 (MIG6) in NRAS-mutant melanoma response to MEK inhibition.
Main Methods:
- Utilized a high-throughput reverse-phase protein array (RPPA) platform.
- Analyzed phospho-proteomic changes in NRAS-mutant melanoma cells treated with trametinib (a MEK inhibitor).
- Assessed the impact of MIG6 expression and depletion on cell migration and invasion.
Main Results:
- Trametinib treatment led to increased v-akt murine thymoma viral oncogene homolog signaling and decreased MIG6 expression.
- MIG6 functions as a negative regulator of epidermal growth factor receptor signaling, cell migration, and invasion.
- Depletion of MIG6 enhanced migration and invasion in MEK-inhibited melanoma cells, while MIG6 expression reduced these properties.
Conclusions:
- Decreased MIG6 expression may promote migration and invasiveness in MEK-inhibited NRAS-mutant melanoma.
- This effect is potentially exacerbated by epidermal growth factor stimulation.
- Understanding these compensatory pathways is crucial for developing effective targeted therapies for NRAS-mutant melanoma.
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