SLAMF7 (CD319) enhances cytotoxic T-cell differentiation and sensitizes CD8+ T cells to immune checkpoint blockade
Jan-Erik Sander1, Irina Han1, Lisette Fickenscher1
1Department of Experimental Pediatrics, University Hospital, Otto-von-Guericke-University, Magdeburg, Germany.
Abstract:
Tumors frequently evade immune destruction by impairing cytotoxic CD8+ T-cell responses, highlighting the need for strategies that restore T-cell functionality. Here, we identify SLAMF7 (CD319) as a key enhancer of human CD8+ T-cell responses against tumors. SLAMF7 expression is induced by pro-inflammatory signals such as IL-12 and CD28 co-stimulation. Agonistic SLAMF7 signaling, in synergy with TCR activation, is able to strongly induce T-cell activation and clonal expansion, a finding consistently observed in CD8+ T cells from healthy adults as well as derived from blood and tumor-draining lymph nodes of patients with head and neck squamous cell carcinoma (HNSCC). Moreover it drives a distinct differentiation programme characterized by elevated expression of key transcription factors Eomes and T-bet, leading to increased production of effector molecules such as Interferon γ, Granzyme B and Perforin. In contrast to CD28 costimulation, SLAMF7 activation also promotes serial killing potential via BTLA induction. In antigen-specific human models, SLAMF7 activation boosts CD8+ T-cell responses against the tumor-associated antigen NY-ESO-1, a key target in several cancers including HNSCC. Moreover, combining SLAMF7 activation with PD-1/PD-L1 immune checkpoint blockade synergistically enhances cytokine release and cytotoxic potential, highlighting its potential to overcome immunosuppression and reinvigorate antitumor immunity.
Insights
SLAMF7 enhances cytotoxic CD8+ T-cell responses against tumors by boosting activation and effector functions. This immune-boosting strategy shows promise in combination with checkpoint blockade for cancer therapy.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Medicine
Background:
- Tumors evade immune destruction by impairing CD8+ T-cell responses.
- Restoring T-cell functionality is crucial for effective anti-tumor immunity.
Purpose of the Study:
- To identify novel targets for enhancing CD8+ T-cell responses against tumors.
- To investigate the role of SLAMF7 (CD319) in human anti-tumor immunity.
Main Methods:
- Analysis of SLAMF7 expression in CD8+ T cells.
- Investigating SLAMF7 signaling in synergy with TCR activation.
- Assessing T-cell differentiation and effector molecule production.
- Evaluating SLAMF7 in antigen-specific models and combination therapy.
Main Results:
- SLAMF7 is induced by pro-inflammatory signals and enhances CD8+ T-cell activation and expansion.
- SLAMF7 promotes T-cell differentiation, increasing effector molecules like Interferon γ.
- SLAMF7 activation enhances serial killing potential and boosts responses against tumor antigens.
- Combination of SLAMF7 activation with PD-1/PD-L1 blockade synergistically enhances anti-tumor immunity.
Conclusions:
- SLAMF7 is a key enhancer of human CD8+ T-cell responses against tumors.
- SLAMF7 activation reinvigorates anti-tumor immunity and holds potential for cancer immunotherapy.
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