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Updated: Apr 18, 2026

Analysis of Lymph Node Volume by Ultra-High-Frequency Ultrasound Imaging in the Braf/Pten Genetically Engineered Mouse Model of Melanoma
Published on: September 8, 2021
BRAF inhibitor resistance mediated by the AKT pathway in an oncogenic BRAF mouse melanoma model
Daniele Perna1, Florian A Karreth2, Alistair G Rust3
1Experimental Cancer Genetics and Cancer Research UK Cambridge Institute, University of Cambridge, Cambridge CB2 0RE, United Kingdom;
Abstract:
BRAF (v-raf murine sarcoma viral oncogene homolog B) inhibitors elicit a transient anti-tumor response in ∼ 80% of BRAF(V600)-mutant melanoma patients that almost uniformly precedes the emergence of resistance. Here we used a mouse model of melanoma in which melanocyte-specific expression of Braf(V618E) (analogous to the human BRAF(V600E) mutation) led to the development of skin hyperpigmentation and nevi, as well as melanoma formation with incomplete penetrance. Sleeping Beauty insertional mutagenesis in this model led to accelerated and fully penetrant melanomagenesis and synchronous tumor formation. Treatment of Braf(V618E) transposon mice with the BRAF inhibitor PLX4720 resulted in tumor regression followed by relapse. Analysis of transposon insertions identified eight genes including Braf, Mitf, and ERas (ES-cell expressed Ras) as candidate resistance genes. Expression of ERAS in human melanoma cell lines conferred resistance to PLX4720 and induced hyperphosphorylation of AKT (v-akt murine thymoma viral oncogene homolog 1), a phenotype reverted by combinatorial treatment with PLX4720 and the AKT inhibitor MK2206. We show that ERAS expression elicits a prosurvival signal associated with phosphorylation/inactivation of BAD, and that the resistance of hepatocyte growth factor-treated human melanoma cells to PLX4720 can be reverted by treatment with the BAD-like BH3 mimetic ABT-737. Thus, we define a role for the AKT/BAD pathway in resistance to BRAF inhibition and illustrate an in vivo approach for finding drug resistance genes.
Insights
BRAF inhibitors initially treat melanoma but resistance emerges. This study identifies ERAS and the AKT/BAD pathway as key drivers of BRAF inhibitor resistance in melanoma, offering new therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- BRAF inhibitors are effective against BRAF(V600)-mutant melanoma but resistance is common.
- A mouse model expressing Braf(V618E) develops melanoma, and Sleeping Beauty insertional mutagenesis accelerates tumor formation.
Purpose of the Study:
- To identify genes and pathways involved in BRAF inhibitor resistance in melanoma.
- To investigate the role of ERAS and the AKT/BAD pathway in acquired resistance.
Main Methods:
- Utilized a Sleeping Beauty transposon mutagenesis mouse model of melanoma treated with BRAF inhibitor PLX4720.
- Analyzed transposon insertions to identify resistance genes.
- Assessed the function of ERAS and AKT/BAD pathway components in human melanoma cell lines.
Main Results:
- Identified ERAS as a candidate resistance gene, conferring resistance to PLX4720 and activating AKT/BAD signaling.
- ERAS expression leads to prosurvival signals via BAD phosphorylation/inactivation.
- Combinatorial treatment with BRAF and AKT inhibitors, or BH3 mimetics, overcame resistance.
Conclusions:
- ERAS plays a significant role in mediating resistance to BRAF inhibitors in melanoma.
- The AKT/BAD pathway is crucial for survival signaling in resistant melanoma cells.
- This study provides an in vivo approach for discovering drug resistance mechanisms and potential therapeutic strategies.
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