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Updated: May 7, 2026

A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Melanomas acquire resistance to B-RAF(V600E) inhibition by RTK or N-RAS upregulation
Ramin Nazarian1, Hubing Shi, Qi Wang
1Division of Dermatology/Department of Medicine, UCLA's Jonsson Comprehensive Cancer Center, 52-121 CHS, Los Angeles, California 90095-1750, USA.
Abstract:
Activating B-RAF(V600E) (also known as BRAF) kinase mutations occur in ∼7% of human malignancies and ∼60% of melanomas. Early clinical experience with a novel class I RAF-selective inhibitor, PLX4032, demonstrated an unprecedented 80% anti-tumour response rate among patients with B-RAF(V600E)-positive melanomas, but acquired drug resistance frequently develops after initial responses. Hypotheses for mechanisms of acquired resistance to B-RAF inhibition include secondary mutations in B-RAF(V600E), MAPK reactivation, and activation of alternative survival pathways. Here we show that acquired resistance to PLX4032 develops by mutually exclusive PDGFRβ (also known as PDGFRB) upregulation or N-RAS (also known as NRAS) mutations but not through secondary mutations in B-RAF(V600E). We used PLX4032-resistant sub-lines artificially derived from B-RAF(V600E)-positive melanoma cell lines and validated key findings in PLX4032-resistant tumours and tumour-matched, short-term cultures from clinical trial patients. Induction of PDGFRβ RNA, protein and tyrosine phosphorylation emerged as a dominant feature of acquired PLX4032 resistance in a subset of melanoma sub-lines, patient-derived biopsies and short-term cultures. PDGFRβ-upregulated tumour cells have low activated RAS levels and, when treated with PLX4032, do not reactivate the MAPK pathway significantly. In another subset, high levels of activated N-RAS resulting from mutations lead to significant MAPK pathway reactivation upon PLX4032 treatment. Knockdown of PDGFRβ or N-RAS reduced growth of the respective PLX4032-resistant subsets. Overexpression of PDGFRβ or N-RAS(Q61K) conferred PLX4032 resistance to PLX4032-sensitive parental cell lines. Importantly, MAPK reactivation predicts MEK inhibitor sensitivity. Thus, melanomas escape B-RAF(V600E) targeting not through secondary B-RAF(V600E) mutations but via receptor tyrosine kinase (RTK)-mediated activation of alternative survival pathway(s) or activated RAS-mediated reactivation of the MAPK pathway, suggesting additional therapeutic strategies.
Insights
Melanoma drug resistance to BRAF inhibitors like PLX4032 arises from PDGFRB upregulation or NRAS mutations, not secondary BRAF mutations. Targeting these pathways offers new therapeutic strategies for BRAF-inhibitor resistant melanoma.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Activating BRAF kinase mutations drive ~7% of human cancers, including ~60% of melanomas.
- BRAF inhibitors show promise but acquired drug resistance is a significant clinical challenge.
- Mechanisms of resistance include secondary BRAF mutations, MAPK reactivation, and alternative survival pathways.
Purpose of the Study:
- To investigate the mechanisms of acquired resistance to the BRAF inhibitor PLX4032 in BRAF(V600E)-positive melanomas.
- To identify alternative pathways or mutations that enable melanoma cells to evade BRAF inhibition.
- To explore potential therapeutic strategies for overcoming drug resistance.
Main Methods:
- Utilized artificially derived PLX4032-resistant melanoma cell lines.
- Validated findings in PLX4032-resistant tumors and patient-derived cultures.
- Assessed PDGFRβ and NRAS alterations, MAPK pathway activation, and drug sensitivity.
Main Results:
- Acquired resistance was driven by mutually exclusive PDGFRβ upregulation or NRAS mutations, not secondary BRAF mutations.
- PDGFRβ upregulation led to alternative survival pathway activation without significant MAPK reactivation.
- NRAS mutations caused MAPK pathway reactivation, predicting sensitivity to MEK inhibitors.
- Knockdown of PDGFRβ or NRAS reduced growth of resistant cells; overexpression conferred resistance.
Conclusions:
- Melanoma evades BRAF(V600E) targeting via RTK-mediated pathways or RAS-mediated MAPK reactivation, not secondary BRAF mutations.
- PDGFRβ and NRAS alterations represent key mechanisms of acquired resistance to BRAF inhibitors.
- Targeting alternative survival pathways or MEK offers potential therapeutic strategies for resistant melanomas.
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