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Published on: October 20, 2023
Diacylglycerol kinases: A look into the future of immunotherapy
Miguel Martin-Salgado1, Ane Ochoa-Echeverría1, Isabel Mérida1
1Department of Immunology and Oncology. National Centre for Biotechnology. Spanish Research Council (CNB-CSIC), Spain.
Abstract:
Cancer still represents the second leading cause of death right after cardiovascular diseases. According to the World Health Organization (WHO), cancer provoked around 10 million deaths in 2020, with lung and colon tumors accounting for the deadliest forms of cancer. As tumor cells become resistant to traditional therapeutic approaches, immunotherapy has emerged as a novel strategy for tumor control. T lymphocytes are key players in immune responses against tumors. Immunosurveillance allows identification, targeting and later killing of cancerous cells. Nevertheless, tumors evolve through different strategies to evade the immune response and spread in a process called metastasis. The ineffectiveness of traditional strategies to control tumor growth and expansion has led to novel approaches considering modulation of T cell activation and effector functions. Program death receptor 1 (PD-1) and cytotoxic T-lymphocyte antigen 4 (CTLA-4) showed promising results in the early 90s and nowadays are still being exploited together with other drugs for several cancer types. Other negative regulators of T cell activation are diacylglycerol kinases (DGKs) a family of enzymes that catalyze the conversion of diacylglycerol (DAG) into phosphatidic acid (PA). In T cells, DGKα and DGKζ limit the PLCγ/Ras/ERK axis thus attenuating DAG mediated signaling and T cell effector functions. Upregulation of either of both isoforms results in impaired Ras activation and anergy induction, whereas germline knockdown mice showed enhanced antitumor properties and more effective immune responses against pathogens. Here we review the mechanisms used by DGKs to ameliorate T cell activation and how inhibition could be used to reinvigorate T cell functions in cancer context. A better knowledge of the molecular mechanisms involved upon T cell activation will help to improve current therapies with DAG promoting agents.
Insights
Diacylglycerol kinases (DGKs) suppress T cell responses crucial for anti-cancer immunity. Inhibiting DGKs could enhance T cell activation, offering a novel immunotherapy strategy to combat cancer progression and metastasis.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Cancer remains a leading cause of death, with tumors developing resistance to conventional treatments.
- Immunotherapy, particularly T cell-based approaches, offers a promising alternative for cancer control.
- Tumor cells evade immune surveillance through various mechanisms, hindering effective T cell responses.
Purpose of the Study:
- To review the role of diacylglycerol kinases (DGKs) in regulating T cell activation and effector functions.
- To explore the potential of DGK inhibition as a strategy to enhance anti-tumor immunity.
- To elucidate the molecular mechanisms by which DGKs modulate T cell signaling pathways.
Main Methods:
- Review of existing literature on DGK function in T cells.
- Analysis of signaling pathways regulated by DGKs, including PLCγ/Ras/ERK.
- Examination of studies involving DGK isoform manipulation (e.g., knockdown mice).
Main Results:
- DGKα and DGKζ isoforms attenuate T cell activation by inhibiting the PLCγ/Ras/ERK pathway.
- Upregulation of DGKs leads to impaired T cell receptor signaling and anergy.
- Germline knockdown of DGKs results in enhanced anti-tumor properties and improved immune responses.
Conclusions:
- DGKs act as negative regulators of T cell activation and effector functions.
- Inhibition of DGKs presents a potential therapeutic strategy to reinvigorate T cell responses against cancer.
- Further understanding of DGK-mediated signaling is crucial for developing novel DAG-promoting immunotherapies.
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