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Jennings, E. K.

Publications and source records attributed to Jennings, E. K..

2 recordsLinked to original sources

Antigen and Checkpoint Receptor Recalibration of T Cell Receptor Signal Strength

How T cell receptor (TCR) signal strength modulates T cell function and to what extent this is modified by immune checkpoint blockade (ICB) are key questions in immunology. Using Nr4a3-Tocky mice as a digital read-out of NFAT pathway activity, we identify the rapid quantitative and qualitative changes that occur in CD4+ T cells in response to a range of TCR signalling strengths. We demonstrate that the time and dose dependent programming of distinct co-inhibitory receptors rapidly re-calibrates T cell activation thresholds. By developing a new in vivo model, we analyse the immediate effects of ICB on T cell re-activation. Our findings reveal that anti-PD1 but not anti-Lag3 immunotherapy leads to an increased TCR signal strength. We define a strong TCR signal metric of five genes specifically upregulated by anti-PD1 in T cells (TCR.strong), which can stratify clinical outcomes during anti-PD1 monotherapy in melanoma patients. Our study therefore reveals how analysis of TCR signal strength - and its manipulation - can provide powerful metrics for monitoring outcomes to immunotherapy. Key PointsO_LITCR signal strength-dependent programming of CD4+ T cells revealed over time in vivo C_LIO_LIInhibitory receptor expression is dynamic, TCR signal strength dependent, and rapidly re-calibrates T cell activation thresholds C_LIO_LIPD1 but not Lag3 blockade leads to a unique and increased TCR signal strength signature (coined TCR.strong) C_LIO_LITCR.strong metric stratifies melanoma patient survival in response to Nivolumab (anti-PD1) therapy C_LI

immunology

Distinct regulation of Nr4a receptors by NFAT and ERK signalling during T cell activation

Nr4a receptors are activated by T cell receptor (TCR) and B cell receptor (BCR) signalling and play key roles in T cell differentiation and promoting T cell exhaustion. How TCR signalling pathways regulate Nr4a receptors and their sensitivities to different physiological types of TCR signalling (e.g. tonic versus activating) remains unknown. Here we utilise Nr4a1/Nur77-GFP and Nr4a3-Tocky mice to elucidate the signalling pathways that govern Nr4a receptor expression in CD4+ and CD8+ T cells. Our findings reveal that Nr4a1-3 are Src family kinase-dependent. Moreover, Nr4a2 and Nr4a3 are abolished by calcineurin inhibitors and bind NFAT1, highlighting a necessary and sufficient role for NFAT in the control of Nr4a2 and Nr4a3, but redundancy for NFAT for Nr4a1. During T cell development, Nr4a1 is activated by tonic signalling during TCR-beta selection in the thymus, whilst Nr4a3 requires cognate peptide:MHC interactions for expression. Thus, due to differential sensitivity of Nr4a1 and Nr4a3 to TCR signalling pathways, T cells undergoing tonic versus activating TCR signalling events can be distinguished in vivo.

immunology