bioRxiv · 10.64898/2026.03.05.709727
TET2-mutant clonal hematopoiesis prevents T-cell exhaustion and suppresses cancer metastasis
Abstract
Clonal hematopoiesis (CH) is widely regarded as a risk factor for age-associated disease, yet its influence on solid tumor progression remains poorly understood. Here, we uncover an unexpected tumor-suppressive role for TET2-mutant CH in solid tumors. Through an analysis of over 16,000 cancer patients, we demonstrate that TET2 mutations are associated with a significant reduction in metastatic burden. Mechanistically, we show that Tet2 deficiency prevents terminal exhaustion in CD8+ tumor-infiltrating lymphocytes (CD8+ TILs). This resistance is driven by DNA hypermethylation at regulatory elements of the transcription factor Tox, which prevents the induction of the terminal exhaustion program. Consequently, Tet2-deficient CD8+ TILs maintain stem-like, effector-competent states that mediate durable anti-tumor immunity and suppress metastatic outgrowth. Our findings establish TET2-mutant CH as a natural epigenetic constraint on T-cell exhaustion and uncover a mechanistically defined pathway with translational potential for enhancing anti-tumor immune responses.
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Le, A. N. T., Fujisawa, M., Campo, G., Nguyen, Y. T. M., Nguyen, T. B., Suma, S., Suehara, Y., Miura, F., Araki, H., Makishima, K., Sakamoto, T., Nakayama, M., Oshima, M., Kakiuchi, M., Ishikawa, S., Tanikawa, C., Matsuda, K., Saiki, R., Ogawa, S., Vanner, R. J., Sakata-Yanagimoto, M.. 2026-03-08. TET2-mutant clonal hematopoiesis prevents T-cell exhaustion and suppresses cancer metastasis. https://doi.org/10.64898/2026.03.05.709727
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