The inhibitory checkpoint, PD-L2, is a target for effector T cells: Novel possibilities for immune therapy
Shamaila Munir Ahmad1, Evelina Martinenaite1, Morten Holmström1,2
1Center for Cancer Immune Therapy (CCIT), Department of Hematology, Copenhagen University Hospital, Herlev, DK-2730 Herlev, Denmark.
Abstract:
Cell surface molecules of the B7/CD28 family play an important role in T-cell activation and tolerance. The relevance of the PD-1/PD-L1 pathway in cancer has been extensively studied whereas PD-L2 has received less attention. However, recently the expression of PD-L2 was described to be independently associated with clinical response in anti-PD1-treated cancer patients. Here, we investigated whether PD-L2 might represent a natural target that induces specific T cells. We identified spontaneous specific T-cell reactivity against two epitopes located in the signal peptide of PD-L2 from samples from patients with cancer as well as healthy individuals ex vivo. We characterized both CD8+ and CD4+ PD-L2-specific T cells. Interestingly, the epitope in PD-L2 that elicited the strongest response was equivalent to a potent HLA-A2-restricted epitope in PD-L1. Importantly, PD-L1-specific and PD-L2-specific T cells did not cross-react; therefore, they represent different T-cell antigens. Moreover, PD-L2-specific T cells reacted to autologous target cells depending on PD-L2 expression. These results suggested that activating PD-L2 specific T cells (e.g., by vaccination) might be an attractive strategy for anti-cancer immunotherapy. Accordingly, PD-L2 specific T cells can directly support anti-cancer immunity by killing of target cells, as well as, indirectly, by releasing pro-inflammatory cytokines at the microenvironment in response to PD-L2-expressing immune supressive cells.
Insights
Researchers discovered spontaneous T-cell responses against PD-L2, a molecule involved in immune regulation. These PD-L2-specific T cells show potential for anti-cancer immunotherapy by targeting tumor cells.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Medicine
Background:
- The B7/CD28 family, including PD-1/PD-L1, regulates T-cell responses.
- PD-L2's role in cancer immunity is less understood than PD-L1's.
- Recent findings link PD-L2 expression to clinical response in anti-PD1 therapy.
Purpose of the Study:
- To investigate PD-L2 as a potential natural target for inducing specific T cells.
- To explore the therapeutic potential of PD-L2-specific T cells in cancer immunotherapy.
Main Methods:
- Identification of spontaneous T-cell reactivity against PD-L2 epitopes ex vivo.
- Characterization of CD8+ and CD4+ PD-L2-specific T cells.
- Assessment of T-cell cross-reactivity with PD-L1 and recognition of autologous target cells.
Main Results:
- Spontaneous T-cell responses against two PD-L2 epitopes were identified in cancer patients and healthy individuals.
- Both CD8+ and CD4+ T cells specific for PD-L2 were characterized.
- PD-L2-specific T cells did not cross-react with PD-L1 epitopes and recognized PD-L2-expressing autologous cells.
Conclusions:
- PD-L2-specific T cells represent distinct antigens and can be activated for anti-cancer immunotherapy.
- Activating PD-L2-specific T cells may enhance anti-cancer immunity through direct killing or cytokine release.
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