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Published on: January 15, 2018
Inhibition of eEF-2K Enhances the Antitumor Efficacy of NK Cells
Xiaoyu Liu1, Xin Liu1, Peng Jiang2
1Key Laboratory of Marine Drugs, Chinese Ministry of Education, School of Medicine and Pharmacy, Ocean University of China, Laboratory for Marine Drugs and Bioproducts of Qingdao National, Laboratory for Marine Science and Technology, Qingdao, China.
Abstract:
NK cells are increasingly being evaluated for their utility in cancer immunotherapy. However, their efficacy is often attenuated in the cancer microenvironment. The identification of additional checkpoint molecules that limit NK cell function is crucial to further development of NK cell-based therapies. In this study, we discovered eukaryotic elongation factor-2 kinase as an important participant in modulating the functional fate of NK cells. Dysfunctional NK cells from patients and tumor-bearing mice were found to have elevated EEF2K expression. CRISPR/Cas9-mediated EEF2K knockout promoted NK cell maturation, proliferation, and cytotoxicity and attenuated their exhaustion. Mechanistic studies demonstrated that EEF2K deletion activated Nrf2 in NK cells, thereby initiating cellular antioxidant signaling to sustain mitochondrial fitness and active metabolism, which was confirmed through combined proteomic high-throughput analysis and experimental observation. In particular, high levels of TGFβ in the tumor microenvironment were found to exacerbate oxidative stress and immunosuppression by inducing EEF2K. Therapeutically, systemic Eef2k deficiency effectively repressed melanoma metastasis and growth while modulating the intratumoral immune microenvironment, and adoptive therapy with EEF2K-knockout NK92 cells exhibited a significant antitumor effect and improved prognosis of human hepatocellular carcinoma xenografts in nude mice. Our findings reveal that eukaryotic elongation factor-2 kinase is an intracellular immune checkpoint of NK cells and provides a potential therapeutic target for developing NK cell-based cancer immunotherapies.
Insights
Eukaryotic elongation factor-2 kinase (eEF-2K) acts as an intracellular immune checkpoint, limiting natural killer (NK) cell function in cancer. Targeting eEF-2K enhances NK cell activity, offering a new therapeutic strategy for cancer immunotherapy.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Biology
Background:
- Natural killer (NK) cells are crucial for cancer immunotherapy but often impaired by the tumor microenvironment.
- Identifying novel checkpoint molecules is essential to enhance NK cell-based cancer therapies.
Purpose of the Study:
- To identify and characterize novel intracellular immune checkpoints regulating NK cell function.
- To investigate the role of eukaryotic elongation factor-2 kinase (eEF-2K) in NK cell-mediated cancer immunity.
Main Methods:
- Utilized CRISPR/Cas9 gene editing to knock out eEF-2K in NK cells.
- Analyzed NK cell function, including maturation, proliferation, cytotoxicity, and exhaustion.
- Investigated molecular mechanisms involving Nrf2 activation, oxidative stress, and mitochondrial fitness.
- Assessed therapeutic efficacy in preclinical cancer models (melanoma, hepatocellular carcinoma).
Main Results:
- Dysfunctional NK cells exhibit elevated eEF-2K expression.
- eEF-2K knockout enhances NK cell maturation, proliferation, cytotoxicity, and reduces exhaustion.
- eEF-2K deletion activates Nrf2, promoting antioxidant signaling and sustaining NK cell metabolism.
- Tumor-derived TGF-β induces eEF-2K, exacerbating immunosuppression.
- Systemic eEF-2K deficiency and adoptive transfer of eEF-2K-knockout NK cells show significant antitumor effects.
Conclusions:
- eEF-2K functions as an intracellular immune checkpoint that suppresses NK cell activity.
- Targeting eEF-2K represents a promising therapeutic strategy for enhancing NK cell-based cancer immunotherapies.
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