bioRxiv · 10.1101/2024.03.29.587004
TET2 regulates early and late transitions in exhausted CD8+ T-cell differentiation and limits CAR T-cell function
Abstract
CD8+ T-cell exhaustion hampers disease control in cancer and chronic infections and limits efficacy of T-cell-based therapies, such as CAR T-cells. Epigenetic reprogramming of CAR T-cells by targeting TET2, a methylcytosine dioxygenase that mediates active DNA demethylation, has shown therapeutic potential; however, the role of TET2 in exhausted T-cell (TEX) development is unclear. In CAR T-cell exhaustion models and chronic LCMV infection, TET2 drove the conversion from stem cell-like, self-renewing TEX progenitors towards terminally differentiated and effector (TEFF)-like TEX. In mouse T-cells, TET2-deficient terminally differentiated TEX retained aspects of TEX progenitor biology, alongside decreased expression of the transcription factor TOX, suggesting that TET2 potentiates terminal exhaustion. TET2 also enforced a TEFF-like terminally differentiated CD8+ T-cell state in the early bifurcation between TEFF and TEX, indicating a broad role for TET2 in mediating the acquisition of an effector biology program that could be exploited therapeutically. Finally, we developed a clinically actionable strategy for TET2- targeted CAR T-cells, using CRISPR/Cas9 editing and site-specific adeno-associated virus transduction to simultaneously knock-in a CAR at the TRAC locus and a functional safety switch within TET2. Disruption of TET2 with this safety switch in CAR T-cells restrained terminal TEX differentiation in vitro and enhanced anti-tumor responses in vivo. Thus, TET2 regulates pivotal fate transitions in TEX differentiation and can be targeted with a safety mechanism in CAR T-cells for improved tumor control and risk mitigation. One Sentence SummaryModulation of exhausted CD8+ T-cell differentiation by targeting TET2 improves therapeutic potential of CAR T-cells in cancer.
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Dimitri, A. J., Baxter, A. E., Chen, G. M., Hopkins, C. R., Rouin, G. T., Huang, H., Kong, W., Holliday, C. H., Wiebking, V., Bartoszek, R., Drury, S., Dalton, K., Koucky, O. M., Chen, Z., Giles, J. R., Jung, I.-Y., O'Connor, R., Collins, S., Everett, J. K., Amses, K., Sherrill-Mix, S., Chandra, A., Goldman, N., Vahedi, G., Jadlowsky, J. K., Young, R. M., Melenhorst, J. J., Maude, S. L., Levine, B. L., Frey, N. V., Berger, S. L., Grupp, S. A., Porter, D. L., Herbst, F., Porteus, M. H., Bushman, F. D., Weber, E. W., Wherry, E. J., Jordan, M. S., Fraietta, J. A.. 2024-03-31. TET2 regulates early and late transitions in exhausted CD8+ T-cell differentiation and limits CAR T-cell function. https://doi.org/10.1101/2024.03.29.587004
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