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Updated: May 5, 2026

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Acquired resistance and clonal evolution in melanoma during BRAF inhibitor therapy
Hubing Shi1,2, Willy Hugo1,2, Xiangju Kong1,2
1Division of Dermatology, Department of Medicine.
Abstract:
BRAF inhibitors elicit rapid antitumor responses in the majority of patients with BRAF(V600)-mutant melanoma, but acquired drug resistance is almost universal. We sought to identify the core resistance pathways and the extent of tumor heterogeneity during disease progression. We show that mitogen-activated protein kinase reactivation mechanisms were detected among 70% of disease-progressive tissues, with RAS mutations, mutant BRAF amplification, and alternative splicing being most common. We also detected PI3K-PTEN-AKT-upregulating genetic alterations among 22% of progressive melanomas. Distinct molecular lesions in both core drug escape pathways were commonly detected concurrently in the same tumor or among multiple tumors from the same patient. Beyond harboring extensively heterogeneous resistance mechanisms, melanoma regrowth emerging from BRAF inhibitor selection displayed branched evolution marked by altered mutational spectra/signatures and increased fitness. Thus, melanoma genomic heterogeneity contributes significantly to BRAF inhibitor treatment failure, implying upfront, cotargeting of two core pathways as an essential strategy for durable responses.
Insights
BRAF inhibitors are effective against BRAF(V600)-mutant melanoma but resistance is common. This study reveals diverse resistance mechanisms, including MAPK reactivation and PI3K-PTEN-AKT alterations, highlighting tumor heterogeneity as key to treatment failure.
Area of Science:
- Oncology
- Cancer Genomics
- Melanoma Research
Background:
- BRAF inhibitors provide rapid responses in BRAF(V600)-mutant melanoma.
- Acquired drug resistance limits long-term efficacy, necessitating understanding of resistance mechanisms.
Purpose of the Study:
- To identify core drug resistance pathways in melanoma.
- To investigate tumor heterogeneity during disease progression under BRAF inhibitor treatment.
Main Methods:
- Analysis of disease-progressive melanoma tissues.
- Genomic profiling to detect molecular lesions and resistance mechanisms.
Main Results:
- Mitogen-activated protein kinase (MAPK) reactivation mechanisms were found in 70% of progressive tissues (RAS mutations, BRAF amplification, alternative splicing).
- PI3K-PTEN-AKT-upregulating genetic alterations were detected in 22% of progressive melanomas.
- Concurrent and heterogeneous resistance mechanisms were common within tumors and across patients, with evidence of branched evolution and increased fitness.
Conclusions:
- Melanoma genomic heterogeneity significantly contributes to BRAF inhibitor treatment failure.
- Upfront cotargeting of core resistance pathways is crucial for achieving durable responses in melanoma.
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