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Updated: Oct 20, 2025

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Published on: February 22, 2020
Protein Signatures of NK Cell-Mediated Melanoma Killing Predict Response to Immunotherapies
Sabrina Cappello1,2, Hsu-Min Sung1, Christian Ickes1
1Molecular Physiology, Institute of Cardiovascular Physiology, University Medical Center, Georg August University, Göttingen, Germany.
Abstract:
Despite impressive advances in melanoma-directed immunotherapies, resistance is common and many patients still succumb to metastatic disease. In this context, harnessing natural killer (NK) cells, which have thus far been sidelined in the development of melanoma immunotherapy, could provide therapeutic benefits for cancer treatment. To identify molecular determinants of NK cell-mediated melanoma killing (NKmK), we quantified NK-cell cytotoxicity against a panel of genetically diverse melanoma cell lines and observed highly heterogeneous susceptibility. Melanoma protein microarrays revealed a correlation between NKmK and the abundance and activity of a subset of proteins, including several metabolic factors. Oxidative phoshorylation, measured by oxygen consumption rate, negatively correlated with melanoma cell sensitivity toward NKmK, and proteins involved in mitochondrial metabolism and epithelial-mesenchymal transition were confirmed to regulate NKmK. Two- and three-dimensional killing assays and melanoma xenografts established that the PI3K/AKT/mTOR signaling axis controls NKmK via regulation of NK cell-relevant surface proteins. A "protein-killing-signature" based on the protein analysis predicted NKmK of additional melanoma cell lines and the response of patients with melanoma to anti-PD-1 checkpoint therapy. Collectively, these findings identify novel NK cell-related prognostic biomarkers and may contribute to improved and personalized melanoma-directed immunotherapies. SIGNIFICANCE: NK-cell cytotoxicity assays and protein microarrays reveal novel biomarkers of NK cell-mediated melanoma killing and enable development of signatures to predict melanoma patient responsiveness to immunotherapies.
Insights
Natural killer (NK) cell-mediated melanoma killing (NKmK) varies significantly. Targeting metabolic factors and the PI3K/AKT/mTOR pathway reveals novel biomarkers for predicting patient response to melanoma immunotherapy.
Area of Science:
- Immunology
- Oncology
- Cell Biology
Background:
- Melanoma immunotherapy faces resistance, necessitating novel therapeutic strategies.
- Natural killer (NK) cells, crucial for innate immunity, are underutilized in melanoma treatment.
- Understanding NK cell-mediated melanoma killing (NKmK) is vital for improving patient outcomes.
Purpose of the Study:
- To identify molecular determinants of NK cell-mediated melanoma killing (NKmK).
- To explore the potential of NK cells as a therapeutic target in melanoma.
- To develop predictive biomarkers for melanoma immunotherapy response.
Main Methods:
- Quantified NK-cell cytotoxicity against diverse melanoma cell lines.
- Utilized melanoma protein microarrays to identify key molecular players.
- Performed 2D/3D killing assays and melanoma xenografts to validate signaling pathways.
- Developed a "protein-killing-signature" for predictive analysis.
Main Results:
- Melanoma cell susceptibility to NKmK was highly heterogeneous.
- Oxidative phosphorylation and epithelial-mesenchymal transition proteins correlated with NKmK.
- The PI3K/AKT/mTOR signaling axis was identified as a key regulator of NKmK.
- The "protein-killing-signature" accurately predicted NKmK and anti-PD-1 therapy response.
Conclusions:
- Novel molecular determinants of NKmK were identified, including metabolic factors and signaling pathways.
- A predictive "protein-killing-signature" can guide personalized melanoma immunotherapy.
- These findings highlight NK cells as a promising target and offer new prognostic biomarkers for melanoma.
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