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PD-1 suppresses CAR signaling by forming the inhibitory signalosome colocalizing to CAR microclusters.

Communications biology 2026 Vol.9(1) p. 135

Yoshida Y, Machiyama H, Wakamatsu E, Saito K, Takeuchi A, Nishikawa T, Matsushima R, Nishi W, Nishijima H, Kanno Y, Yokosuka T

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The combination of chimeric antigen receptor (CAR)-T cell therapy with immune checkpoint blockade (ICB) using anti-PD-1 has been demonstrated to enhance antitumor CAR-T cell responses.

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APA Yoshida Y, Machiyama H, et al. (2026). PD-1 suppresses CAR signaling by forming the inhibitory signalosome colocalizing to CAR microclusters.. Communications biology, 9(1), 135. https://doi.org/10.1038/s42003-025-09415-8
MLA Yoshida Y, et al.. "PD-1 suppresses CAR signaling by forming the inhibitory signalosome colocalizing to CAR microclusters.." Communications biology, vol. 9, no. 1, 2026, pp. 135.
PMID 41507351

Abstract

The combination of chimeric antigen receptor (CAR)-T cell therapy with immune checkpoint blockade (ICB) using anti-PD-1 has been demonstrated to enhance antitumor CAR-T cell responses. Although, in conventional T cells, PD-1 suppresses T cell activation by binding to PD-L1 with recruitment of a phosphatase SHP2, the precise mechanisms underlying this process in CAR-T cells remain unclear. Here we show that, using real-time single-cell imaging, CD19-CAR aggregates to form "CAR microclusters," which transduce activation signals in coordination with key downstream molecules involved in TCR signaling. Concurrently, PD-1 forms inhibitory signalosomes, recruiting SHP2 into CAR microclusters by PD-L1 binding, leading to diminished CD3ζ phosphorylation, as well as reduced in cytokine production, antigen-specific cytotoxicity, and antitumor CAR-T cell effects in vivo. Importantly, anti-PD-1 treatment impairs PD-1 microcluster formation and restores CAR-T cell activities. Thus, these findings suggest that PD-1 microcluster formation can serve as a trigger for immune tolerance in CAR-T cells.

MeSH Terms

Programmed Cell Death 1 Receptor; Receptors, Chimeric Antigen; Signal Transduction; Humans; Animals; Mice; Immunotherapy, Adoptive; T-Lymphocytes; Cell Line, Tumor; Lymphocyte Activation; Receptors, Antigen, T-Cell

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