Regulatory T-cell sensing of extracellular ATP via P2RX7 promotes their accumulation and suppression and drives lung tumor growth
- Cancer Immunol Res. 2026 Jan 21:10.1158/2326-6066.CIR-25-0567. doi: 10.1158/2326-6066.CIR-25-0567.
- 1. Mayo Clinic Phoenix, Arizona United States.
- 2. Brigham and Women's Hospital Boston, Massachusetts United States.
- 3. Mayo Clinic Scottsdale, Arizona United States.
- 4. Massachusetts General Hospital Boston United States.
- 5. Mayo Clinic Jacksonville, Florida United States.
- 6. Universidade de São Paulo Sao Paulo, Sao Paulo Brazil.
- 7. Mayo Clinic Jacksonville, FL United States.
- 8. Mayo Clinic United States.
- 9. Mayo Clinic Scottsdale, AZ United States.
Lung Cancer is the leading cause of cancer-related deaths worldwide and, despite advances in treatment, immune suppression remains an obstacle to effective therapy. Effector CD4+ T cells (CD4+ Teffs) are critical for antitumor immunity, but their function is often inhibited by regulatory T cells (Tregs), which accumulate in lung tumors and mediate suppressive functions through multiple mechanisms. This suppression leads to tumor progression and poor patient outcomes. However, the mechanisms underlying Treg-mediated suppression are not fully understood. Herein, we identify the extracellular ATP receptor P2RX7 as a key regulator of Treg function in lung tumors. In a murine lung Cancer model induced by Lewis lung carcinoma cells, we found that P2RX7 enhanced the suppressive capacity of tumor-infiltrating Tregs, promoting tumor growth. In T cell-specific P2RX7-KO mice, reduced Treg infiltration was accompanied by increased CD4+ Teff accumulation and improved tumor control. Treg-specific P2RX7-KO mice exhibited reduced tumor growth, confirming a Treg-intrinsic role of P2RX7. Suppression assays revealed that tumor-infiltrating wild-type Tregs had greater suppressive activity compared to P2RX7-KO Tregs, which failed to inhibit type 1 and Tfh-like responses. This was associated with increased tumor-specific IgG production by lung B cells in P2RX7-KO mice. We also observed that wild-type Tregs expressed higher levels of the immunosuppressive molecule CTLA-4 when compared to P2RX7-KO Tregs. Thus, we conclude that P2RX7 expression on Tregs is essential for their suppressive function in lung Cancer and targeting of P2RX7 may constitute a strategy to improve lung Cancer treatment by alleviating Treg-mediated immune suppression.
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Cat. No.Product NameDescriptionTargetResearch Area
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target: P2X ReceptorResearch Areas: Neurological Disease