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Systems Analysis of Adaptive Responses to MAP Kinase Pathway Blockade in BRAF Mutant Melanoma
Brian J Capaldo1, Devin Roller2, Mark J Axelrod2
1Department of Biochemistry and Molecular Genetics, University of Virginia, Charlottesville, Virginia, United States of America.
Abstract:
Fifty percent of cutaneous melanomas are driven by activated BRAFV600E, but tumors treated with RAF inhibitors, even when they respond dramatically, rapidly adapt and develop resistance. Thus, there is a pressing need to identify the major mechanisms of intrinsic and adaptive resistance and develop drug combinations that target these resistance mechanisms. In a combinatorial drug screen on a panel of 12 treatment-naïve BRAFV600E mutant melanoma cell lines of varying levels of resistance to mitogen-activated protein kinase (MAPK) pathway inhibition, we identified the combination of PLX4720, a targeted inhibitor of mutated BRaf, and lapatinib, an inhibitor of the ErbB family of receptor tyrosine kinases, as synergistically cytotoxic in the subset of cell lines that displayed the most resistance to PLX4720. To identify potential mechanisms of resistance to PLX4720 treatment and synergy with lapatinib treatment, we performed a multi-platform functional genomics analysis to profile the genome as well as the transcriptional and proteomic responses of these cell lines to treatment with PLX4720. We found modest levels of resistance correlated with the zygosity of the BRAF V600E allele and receptor tyrosine kinase (RTK) mutational status. Layered over base-line resistance was substantial upregulation of many ErbB pathway genes in response to BRaf inhibition, thus generating the vulnerability to combination with lapatinib. The transcriptional responses of ErbB pathway genes are associated with a number of transcription factors, including ETS2 and its associated cofactors that represent a convergent regulatory mechanism conferring synergistic drug susceptibility in the context of diverse mutational landscapes.
Insights
Targeting BRAFV600E melanoma resistance requires combination therapy. Combining BRAF inhibitor PLX4720 with lapatinib shows synergistic effects, overcoming resistance by targeting the ErbB pathway and ETS2 transcription factors.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Cutaneous melanomas often harbor BRAFV600E mutations, leading to reliance on the MAPK pathway.
- RAF inhibitors, while effective, frequently encounter intrinsic and adaptive resistance mechanisms.
- Developing strategies to overcome drug resistance is crucial for improving melanoma treatment outcomes.
Purpose of the Study:
- To identify mechanisms of resistance to BRAF inhibitors in melanoma.
- To discover synergistic drug combinations that overcome BRAF inhibitor resistance.
- To elucidate the molecular underpinnings of adaptive resistance to MAPK pathway inhibition.
Main Methods:
- Utilized a combinatorial drug screen of BRAFV600E melanoma cell lines against PLX4720 and lapatinib.
- Performed multi-platform functional genomics, including genomic, transcriptomic, and proteomic profiling.
- Analyzed gene expression and mutation status, including BRAF V600E allele zygosity and RTK mutations.
Main Results:
- Identified a synergistic cytotoxic effect of PLX4720 and lapatinib in resistant melanoma cell lines.
- Found that resistance correlated with BRAF V600E allele zygosity and RTK mutational status.
- Observed significant upregulation of ErbB pathway genes upon BRAF inhibition, creating a vulnerability to lapatinib.
Conclusions:
- Combination therapy with BRAF and ErbB inhibitors can overcome resistance in BRAFV600E melanoma.
- ErbB pathway activation, regulated by factors like ETS2, is a key adaptive resistance mechanism.
- Targeting the ErbB pathway in conjunction with BRAF inhibition offers a promising therapeutic strategy.
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