bioRxiv · 10.1101/2024.06.06.597762
Lag3 and PD-L1 govern T cell receptor signal duration in adaptively tolerised CD4+ T cells
Abstract
Lag3 and PD-1 are immune checkpoints that regulate T cell responses and are current immunotherapy targets. Yet how they function to control early CD4+ T cell activation remains unclear. Here, we show that the PD-1 and Lag3 pathways exhibit layered control of the early CD4+ T cell activation process, with the effects of Lag3 more pronounced in the presence of PD-1 pathway co-blockade (CB). RNA-sequencing revealed that CB drove an early NFAT-dependent transcriptional profile, including promotion of ICOShi T follicular helper (Tfh) cell differentiation. NFAT pathway inhibition abolished CB-induced upregulation of NFAT-dependent co-receptors ICOS and OX40, whilst unaffecting the NFAT-independent gene Nr4a1. Mechanistically, Lag3 and PD-1 pathways functioned additively to regulate the duration of T cell receptor (TCR) signals during CD4+ T cell re-activation. Our data therefore reveal that PD-1 and Lag3 pathways converge to additively regulate TCR signal duration and NFAT-dependent transcriptional activity during early CD4+ T cell re-activation. HighlightsO_LIPD-1 and Lag3 pathways exhibit layered control of early CD4+ T cell activation C_LIO_LITheir co-blockade enhances NFAT-dependent TCR transcriptional programmes C_LIO_LIInhibition of NFAT signalling reverses the functional effects of PD-1 and Lag3 co-blockade C_LIO_LIMechanistically, PD-1 and Lag3 function to additively regulate TCR signal duration during re-activation of CD4+ T cells C_LI
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Sheriff, L., Copland, A., Lecky, D. A., Done, R., George, L. S., Jennings, E. K., Rouvray, S., Elliot, T. A., Jinks, E. S., Pallan, L., Bending, D.. 2024-06-09. Lag3 and PD-L1 govern T cell receptor signal duration in adaptively tolerised CD4+ T cells. https://doi.org/10.1101/2024.06.06.597762
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