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Published on: July 20, 2019
Impact of Genomic Mutation on Melanoma Immune Microenvironment and IFN-1 Pathway-Driven Therapeutic Responses
Fátima María Mentucci1, Elisa Ayelén Romero Nuñez1, Agustina Ercole1
1Departamento de Biología Molecular, INBIAS, Universidad Nacional de Río Cuarto, Río Cuarto X5800BIA, Argentina.
Abstract:
The BRAFV600E mutation, found in approximately 50% of melanoma cases, plays a crucial role in the activation of the MAPK/ERK signaling pathway, which promotes tumor cell proliferation. This study aimed to evaluate its impact on the melanoma immune microenvironment and therapeutic responses, particularly focusing on immunogenic cell death (ICD), a pivotal cytotoxic process triggering anti-tumor immune responses. Through comprehensive in silico analysis of the Cancer Genome Atlas data, we explored the association between the BRAFV600E mutation, immune subtype dynamics, and tumor mutation burden (TMB). Our findings revealed that the mutation correlated with a lower TMB, indicating a reduced generation of immunogenic neoantigens. Investigation into immune subtypes reveals an exacerbation of immunosuppression mechanisms in BRAFV600E-mutated tumors. To assess the response to ICD inducers, including doxorubicin and Me-ALA-based photodynamic therapy (PDT), compared to the non-ICD inducer cisplatin, we used distinct melanoma cell lines with wild-type BRAF (SK-MEL-2) and BRAFV600E mutation (SK-MEL-28, A375). We demonstrated a differential response to PDT between the WT and BRAFV600E cell lines. Further transcriptomic analysis revealed upregulation of IFNAR1, IFNAR2, and CXCL10 genes associated with the BRAFV600E mutation, suggesting their involvement in ICD. Using a gene reporter assay, we showed that PDT robustly activated the IFN-1 pathway through cGAS-STING signaling. Collectively, our results underscore the complex interplay between the BRAFV600E mutation and immune responses, suggesting a putative correlation between tumors carrying the mutation and their responsiveness to therapies inducing the IFN-1 pathway, such as the ICD inducer PDT, possibly mediated by the elevated expression of IFNAR1/2 receptors.
Insights
The BRAFV600E mutation in melanoma is linked to a less immunogenic tumor microenvironment and altered responses to therapies like photodynamic therapy (PDT). PDT may be effective in BRAFV600E tumors by activating the IFN-1 pathway.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- The BRAFV600E mutation is prevalent in melanoma, driving tumor growth via the MAPK/ERK pathway.
- Understanding its effect on the immune microenvironment and treatment response is critical for effective melanoma therapy.
Purpose of the Study:
- To investigate the impact of the BRAFV600E mutation on the melanoma immune microenvironment and response to immunogenic cell death (ICD) inducers.
- To explore the association between BRAFV600E, tumor mutation burden (TMB), and immune subtypes.
- To evaluate differential responses to photodynamic therapy (PDT) and other agents in BRAFV600E-mutated versus wild-type melanoma.
Main Methods:
- In silico analysis of Cancer Genome Atlas data to correlate BRAFV600E mutation with TMB and immune subtypes.
- In vitro experiments using melanoma cell lines (wild-type BRAF and BRAFV600E) treated with ICD inducers (doxorubicin, PDT) and a non-ICD inducer (cisplatin).
- Transcriptomic analysis and gene reporter assays to elucidate molecular mechanisms, including IFN-1 pathway activation via cGAS-STING signaling.
Main Results:
- BRAFV600E mutation correlated with lower TMB and increased immunosuppression.
- Differential responses to PDT were observed between wild-type and BRAFV600E melanoma cell lines.
- PDT activated the IFN-1 pathway through cGAS-STING signaling, with upregulation of IFNAR1, IFNAR2, and CXCL10 genes in BRAFV600E tumors.
Conclusions:
- The BRAFV600E mutation influences the melanoma immune landscape, potentially reducing neoantigen generation and enhancing immunosuppression.
- Melanoma with BRAFV600E mutation may exhibit distinct therapeutic responses, particularly to ICD inducers like PDT.
- PDT's efficacy in BRAFV600E melanoma might be mediated by activating the IFN-1 pathway, suggesting this as a potential therapeutic strategy.
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