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Updated: Nov 19, 2025

A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Therapeutic Implications of Detecting MAPK-Activating Alterations in Cutaneous and Unknown Primary Melanomas
Alexander N Shoushtari1,2, Walid K Chatila3,4, Arshi Arora5
1Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, New York. shoushta@mskcc.org.
Purpose:
Cutaneous and unknown primary melanomas frequently harbor alterations that activate the MAPK pathway. Whether MAPK driver detection beyond BRAF V600 is clinically relevant in the checkpoint inhibitor era is unknown.
Experimental Design:
Patients with melanoma were prospectively offered tumor sequencing of 341-468 genes. Oncogenic alterations in 28 RTK-RAS-MAPK pathway genes were used to construct MAPK driver groups. Time to treatment failure (TTF) was determined for patients who received first-line programmed cell death protein 1 (PD-1) monotherapy, nivolumab plus ipilimumab, or subsequent genomically matched targeted therapies. A Cox proportional hazards model was constructed for TTF using driver group and clinical variables.
Results:
A total of 670 of 696 sequenced melanomas (96%) harbored an oncogenic RTK-RAS-MAPK pathway alteration; 33% had ≥1 driver. Nine driver groups varied by clinical presentation and mutational burden. TTF of PD-1 monotherapy (N = 181) varied by driver, with worse outcomes for NRAS Q61 and BRAF V600 versus NF1 or other alterations (median 4.2, 7.5, 22, and not reached; P < 0.0001). Driver group remained significant, independent of tumor mutational burden and clinical features. TTF did not vary by driver for nivolumab plus ipilimumab (N = 141). Among 172 patients with BRAF V600 wild-type melanoma who progressed on checkpoint blockade, 27 were treated with genomically matched therapy, and eight (30%) derived clinical benefit lasting ≥6 months.
Conclusions:
Targeted capture multigene sequencing can detect oncogenic RTK-RAS-MAPK pathway alterations in almost all cutaneous and unknown primary melanomas. TTF of PD-1 monotherapy varies by mechanism of ERK activation. Oncogenic kinase fusions can be successfully targeted in immune checkpoint inhibitor-refractory melanoma.
Insights
Detecting MAPK pathway alterations beyond BRAF V600 in melanoma is clinically relevant for predicting response to PD-1 monotherapy. Genomically matched therapies show promise for refractory melanoma patients.
Area of Science:
- Oncology
- Genetics
- Immunotherapy
Background:
- Cutaneous and unknown primary melanomas often have MAPK pathway-activating alterations.
- The clinical significance of identifying MAPK drivers beyond BRAF V600 mutations in the era of checkpoint inhibitors remains unclear.
Purpose of the Study:
- To investigate the clinical relevance of detecting MAPK pathway drivers beyond BRAF V600 in melanoma patients treated with checkpoint inhibitors.
- To assess the impact of different MAPK driver groups on time to treatment failure (TTF) with programmed cell death protein 1 (PD-1) monotherapy.
Main Methods:
- Prospective tumor sequencing of 341-468 genes in melanoma patients.
- Classification of patients into MAPK driver groups based on alterations in 28 RTK-RAS-MAPK pathway genes.
- Analysis of TTF using a Cox proportional hazards model, considering driver group, tumor mutational burden, and clinical features.
Main Results:
- 96% of melanomas harbored oncogenic RTK-RAS-MAPK pathway alterations, with 33% having at least one driver.
- TTF of PD-1 monotherapy significantly varied by driver group, with worse outcomes for NRAS Q61 and BRAF V600 alterations.
- Driver group remained a significant independent predictor of TTF for PD-1 monotherapy.
- Among BRAF V600 wild-type melanoma patients progressing on checkpoint blockade, 30% (8/27) benefited from genomically matched targeted therapy for ≥6 months.
Conclusions:
- Targeted multigene sequencing effectively detects oncogenic RTK-RAS-MAPK pathway alterations in melanoma.
- The mechanism of ERK activation, indicated by MAPK driver groups, influences TTF with PD-1 monotherapy.
- Oncogenic kinase fusions represent a targetable vulnerability in immune checkpoint inhibitor-refractory melanoma.
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