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Blocking Nitrosylation Induces Immunogenic Cell Death by Sensitizing NRAS-Mutant Melanoma to MEK Inhibitors
Jyoti Srivastava1, Vipin K Yadav1, Rachel V Jimenez2
1Department of Tumor Microenvironment and Metastasis, Moffitt Cancer Center and Research Institute, Tampa, Florida.
Abstract:
Activating NRAS mutations occur in 15% to 25% of all melanomas. However, this subtype remains refractory to existing therapeutics, including immunotherapy and RAS inhibitors; therefore, identifying innovative treatment strategies is of utmost importance. We investigated the role of nitrosylation, a nitric oxide-induced posttranslational modification, in melanoma progression and therapeutic resistance. Inhibiting nitrosylation sensitized NRAS-mutant melanomas to targeted MEK inhibitors (MEKi), leading to sustained downregulation of the ERK-MAPK pathway, along with concomitant denitrosylation of NRAS, MEK, ERK, RSK1, and DUSPs. Global nitrosylome profiling using mass spectrometry revealed nitrosylation of multiple ERK regulators. Gain- and loss-of-function studies confirmed a positive association between nitrosylation and ERK activation. ERK and MEK proteins harbored potential nitrosylation sites, mutation of which abrogated their phosphorylation and inhibited cell growth. The nitrosylome also contained damage-associated molecular patterns (DAMP), factors known to induce immunogenic cell death (ICD). Notably, nitrosylation inhibition combined with MEKi markedly inhibited NRAS-mutant melanoma growth in an immunocompetent mouse model. This was accompanied by downregulated MEK-ERK signaling and extracellular release of DAMPs such as calreticulin, phospho-eIF2α, and HMGB1, confirming ICD induction. Furthermore, the combination significantly increased the repertoire of CD8+ T cells, dendritic cells, and macrophages in the tumor microenvironment, which was validated in cocultures of dendritic cells and T lymphocytes. In conclusion, the current study demonstrates that nitrosylation inhibition sensitizes NRAS-mutant melanomas to targeted MEKi-induced cell death and causes the release of non-nitrosylated (active) DAMPs that induce a potent antimelanoma immune response via ICD. These findings highlight potential therapeutic vulnerabilities in the currently untreatable NRAS-mutant melanoma subtype.
Significance:
Nitrosylation-regulated molecular mechanisms present a vulnerability that can be exploited to sensitize NRAS-mutant melanomas to existing targeted therapies while enhancing antitumor immunity.
Insights
Inhibiting nitrosylation sensitizes NRAS-mutant melanoma to MEK inhibitors, inducing immunogenic cell death and a potent anti-tumor immune response. This offers a new strategy for treating this aggressive cancer subtype.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Activating NRAS mutations are found in 15-25% of melanomas.
- This melanoma subtype is resistant to current therapies, including immunotherapy and RAS inhibitors.
- Novel therapeutic strategies are crucial for NRAS-mutant melanoma.
Purpose of the Study:
- Investigate the role of nitrosylation in melanoma progression and therapeutic resistance.
- Determine if inhibiting nitrosylation can sensitize NRAS-mutant melanomas to MEK inhibitors.
- Explore the impact of this combination therapy on the tumor microenvironment and immune response.
Main Methods:
- Utilized mass spectrometry for global nitrosylome profiling.
- Performed gain- and loss-of-function studies to assess protein associations.
- Employed an immunocompetent mouse model of NRAS-mutant melanoma.
- Conducted co-culture experiments with dendritic cells and T-lymphocytes.
Main Results:
- Inhibiting nitrosylation sensitized NRAS-mutant melanomas to MEK inhibitors (MEKi), downregulating ERK-MAPK signaling.
- Nitrosylation inhibition led to de-nitrosylation of key proteins including NRAS, MEK, and ERK.
- The combination therapy induced immunogenic cell death (ICD) via release of DAMPs (e.g., calreticulin, HMGB1).
- Combination treatment significantly enhanced anti-tumor immunity by increasing CD8+ T cells, dendritic cells, and macrophages in the tumor microenvironment.
Conclusions:
- Nitrosylation inhibition is a viable strategy to sensitize NRAS-mutant melanomas to MEKi.
- This approach triggers ICD and a robust anti-melanoma immune response.
- Findings reveal potential therapeutic vulnerabilities for treating currently untreatable NRAS-mutant melanoma.
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