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Published on: January 9, 2018
DNAM-1 and the TIGIT/PVRIG/TACTILE Axis: Novel Immune Checkpoints for Natural Killer Cell-Based Cancer Immunotherapy
Beatriz Sanchez-Correa1, Isabel Valhondo2, Fakhri Hassouneh3
1Immunology Unit, Department of Physiology, University of Extremadura, 10003 Cáceres, Spain. beatrizsanchezcorrea@gmail.com.
Abstract:
Natural killer (NK) cells are lymphocytes of the innate immune response characterized by their role in the destruction of tumor cells. Activation of NK cells depend on a fine balance between activating and inhibitory signals mediated by different receptors. In recent years, a family of paired receptors that interact with ligands of the Nectin/Nectin-like (Necl) family has attracted great interest. Two of these ligands, Necl-5 (usually termed CD155 or PVR) and Nectin-2 (CD112), frequently expressed on different types of tumor cells, are recognized by a group of receptors expressed on T and NK cells that exert opposite functions after interacting with their ligands. These receptors include DNAM-1 (CD226), TIGIT, TACTILE (CD96) and the recently described PVRIG. Whereas activation through DNAM-1 after recognition of CD155 or CD112 enhances NK cell-mediated cytotoxicity against a wide range of tumor cells, TIGIT recognition of these ligands exerts an inhibitory effect on NK cells by diminishing IFN-γ production, as well as NK cell-mediated cytotoxicity. PVRIG has also been identified as an inhibitory receptor that recognizes CD112 but not CD155. However, little is known about the role of TACTILE as modulator of immune responses in humans. TACTILE control of tumor growth and metastases has been reported in murine models, and it has been suggested that it negatively regulates the anti-tumor functions mediated by DNAM-1. In NK cells from patients with solid cancer and leukemia, it has been observed a decreased expression of DNAM-1 that may shift the balance in favor to the inhibitory receptors TIGIT or PVRIG, further contributing to the diminished NK cell-mediated cytotoxic capacity observed in these patients. Analysis of DNAM-1, TIGIT, TACTILE and PVRIG on human NK cells from solid cancer or leukemia patients will clarify the role of these receptors in cancer surveillance. Overall, it can be speculated that in cancer patients the TIGIT/PVRIG pathways are upregulated and represent novel targets for checkpoint blockade immunotherapy.
Insights
Natural killer (NK) cells fight tumors, but cancer can weaken them. Understanding receptors like DNAM-1, TIGIT, and PVRIG on NK cells may reveal new cancer immunotherapies.
Area of Science:
- Immunology
- Cancer Biology
- Cellular Signaling
Background:
- Natural killer (NK) cells are crucial for innate immunity and tumor cell destruction.
- NK cell activation relies on a balance of signals from paired receptors interacting with Nectin/Nectin-like (Necl) family ligands.
- Tumor cells often express ligands CD155 and CD112, which interact with NK cell receptors DNAM-1, TIGIT, TACTILE, and PVRIG.
Purpose of the Study:
- To investigate the roles of DNAM-1, TIGIT, TACTILE (CD96), and PVRIG in human NK cell responses.
- To clarify the function of these receptors in cancer surveillance, particularly in patients with solid cancer and leukemia.
- To explore the potential of TIGIT/PVRIG pathways as novel targets for cancer immunotherapy.
Main Methods:
- Analysis of DNAM-1, TIGIT, TACTILE, and PVRIG expression on human NK cells from cancer patients.
- Examination of the functional consequences of receptor-ligand interactions on NK cell cytotoxicity and cytokine production.
- Comparative analysis of receptor expression in healthy individuals versus patients with solid cancer and leukemia.
Main Results:
- DNAM-1 activation enhances NK cell cytotoxicity against tumor cells.
- TIGIT and PVRIG act as inhibitory receptors, diminishing NK cell function (e.g., IFN-γ production).
- Decreased DNAM-1 expression and potential upregulation of TIGIT/PVRIG are observed in cancer patients, impairing NK cell activity.
Conclusions:
- The balance between activating (DNAM-1) and inhibitory (TIGIT, PVRIG) receptors is critical for NK cell anti-tumor immunity.
- Dysregulation of these receptors in cancer patients contributes to compromised NK cell surveillance.
- Targeting TIGIT/PVRIG pathways offers a promising strategy for novel cancer immunotherapies.
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