Authors
Alexander J Wesolowski, Ardon M Pillay, Panagiota Vardaka, Rabab Nasrallah, Randy Greaves, Housaiyin Li, Iliana Loffreda, Chelsea Jenkin, Andrew M James, Alica Nübling, Christopher J Ward, Teresa von Linde, Alberto G Conti, Sheue-Fen Tzeng, Layla Dahmani, Alexander C Evans, Sarah K Whiteside, Yumi Yamashita-Kanemaru, Charlotte J Imianowski, Jie Yang, Ignacio Moraga Gonzalez, Jack Chapman, Aws Al-Deka, Klaus Okkenhaug, Michael P Murphy, Bartlomiej Swiatczak, Geoffrey Guittard, Enrico Lugli, Lukas Flatz, Ping-Chih Ho, Robert L Eil, Rahul Roychoudhuri
Published in
Science (New York, N.Y.). Volume 393. Issue 6815. Pages 1036-1044. Sep 03, 2026. Epub Sep 03, 2026.
Abstract
Reactive oxygen species (ROS) promote genomic instability and fuel oncogenic signaling in cancer, but antioxidant therapies have so far failed to improve, or worsen, cancer outcomes. Emerging data suggest that T cells depend on ROS for signal transduction. In this study, we show that tumors exploit this dependency, releasing antioxidant enzymes into the tumor environment to suppress T cell-mediated antitumor immunity. The interstitial fluid of tumors possesses potent antioxidant activity, associated with enrichment of the antioxidant enzyme peroxiredoxin 1 (PRDX1). Extracellular PRDX1 deprives T cells of ROS, preventing oxidative inactivation of phosphatases required for T cell receptor-driven kinase signaling and effector function. Prdx1 is up-regulated upon cancer immunoediting, and loss of PRDX1 within tumors enhances antitumor immunity and immunotherapy responses. These findings define a redox-dependent mechanism of tumor immunosuppression that is potentially amenable to therapeutic intervention.
PMID:
42691162
Bibliographic data and abstract were imported from PubMed on 04 Sep 2026.
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