A pan-immunotherapy signature to predict intratumoral CD8<sup>+</sup> T cell expansions.

Takahashi, Munetomo; Tsunoda, Mikiya; Aoki, Hiroyasu; Kurosu, Masaki; Ogiwara, Haru; Shichino, Shigeyuki; Bending, David; Ishikawa, Shumpei et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

Effective cancer immunotherapy relies on the clonal proliferation and expansion of CD8<sup>+</sup> T cells in the tumor. However, our insights into clonal expansions are limited, owing to an inability to track the same clones in tumors over time. Here, we develop a multi-site tumor mouse model system to track hundreds of expanding and contracting CD8<sup>+</sup> T cell clones over multiple timepoints in tumors of the same individual. Through coupling of clonal expansion dynamics and single-cell RNA/TCR-seq data, we identify a transcriptomic signature in PD-1<sup>+</sup>Ly108<sup>+</sup> precursor exhausted cells that strongly predicts rates of intratumoral clone expansion. The signature correlates with expansion in mice, both with and without immunotherapies, and in patients undergoing PD-1 blockade therapy. Expression of the signature during treatment corresponds with positive clinical outcomes. Downregulation of the signature precedes clone contraction-a phase in which clones contract but maintain revivable precursor exhausted cells in the tumor. LAG-3 blockade re-activates the expansion signature, re-expanding pre-existing clones, including previously contracted clones. These findings reveal how the study of clonal expansion dynamics provide a powerful 'pan-immunotherapy' signature for monitoring immunotherapies with implications for their future development.

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