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Published on: September 28, 2018
PD-1 preferentially inhibits the activation of low-affinity T cells
Kenji Shimizu1, Daisuke Sugiura1, Il-Mi Okazaki1
1Laboratory of Molecular Immunology, Institute for Quantitative Biosciences, The University of Tokyo, 113-0032 Tokyo, Japan.
Abstract:
Anti-PD-1 therapies can activate tumor-specific T cells to destroy tumors. However, whether and how T cells with different antigen specificity and affinity are differentially regulated by PD-1 remain vaguely understood. Upon antigen stimulation, a variety of genes is induced in T cells. Recently, we found that T cell receptor (TCR) signal strength required for the induction of genes varies across different genes and PD-1 preferentially inhibits the induction of genes that require stronger TCR signal. As each T cell has its own response characteristics, inducibility of genes likely differs across different T cells. Accordingly, the inhibitory effects of PD-1 are also expected to differ across different T cells. In the current study, we investigated whether and how factors that modulate T cell responsiveness to antigenic stimuli influence PD-1 function. By analyzing TCRs with different affinities to peptide-MHC complexes (pMHC) and pMHCs with different affinities to TCR, we demonstrated that PD-1 inhibits the expression of TCR-inducible genes efficiently when TCR:pMHC affinity is low. In contrast, affinities of peptides to MHC and MHC expression levels did not affect PD-1 sensitivity of TCR-inducible genes although they markedly altered the dose responsiveness of T cells by changing the efficiency of pMHC formation, suggesting that the strength of individual TCR signal is the key determinant of PD-1 sensitivity. Accordingly, we observed a preferential expansion of T cells with low-affinity to tumor-antigen in PD-1-deficient mice upon inoculation of tumor cells. These results demonstrate that PD-1 imposes qualitative control of T cell responses by preferentially suppressing low-affinity T cells.
Insights
Programmed cell death protein 1 (PD-1) therapy activates tumor-specific T cells. PD-1 preferentially suppresses T cells with low tumor-antigen affinity, controlling T cell responses qualitatively.
Area of Science:
- Immunology
- Cancer Biology
- T cell Activation
Background:
- Anti-programmed cell death protein 1 (PD-1) therapies harness T cells to eliminate tumors.
- The differential regulation of T cells by PD-1 based on antigen specificity and affinity remains unclear.
- T cell receptor (TCR) signal strength dictates gene induction, with PD-1 inhibiting genes requiring stronger signals.
Purpose of the Study:
- To investigate how factors modulating T cell responsiveness influence PD-1 function.
- To determine if PD-1's inhibitory effects differ across T cells with varying response characteristics.
- To elucidate the role of TCR signal strength in PD-1 sensitivity.
Main Methods:
- Analysis of T cell receptors (TCRs) with varying affinities to peptide-MHC (pMHC) complexes.
- Assessment of pMHCs with differing affinities to TCRs.
- Evaluation of PD-1's impact on TCR-inducible gene expression under different affinity conditions.
- In vivo studies using PD-1-deficient mice and tumor inoculation.
Main Results:
- PD-1 efficiently inhibits TCR-inducible gene expression when TCR:pMHC affinity is low.
- Peptide-MHC affinities and MHC expression levels did not alter PD-1 sensitivity, but influenced T cell dose responsiveness.
- Individual TCR signal strength is the primary determinant of PD-1 sensitivity.
- T cells with low tumor-antigen affinity preferentially expanded in PD-1-deficient mice after tumor cell inoculation.
Conclusions:
- PD-1 imposes qualitative control over T cell responses.
- PD-1 preferentially suppresses T cells with low affinity for tumor antigens.
- Understanding PD-1's mechanism offers insights into optimizing cancer immunotherapy.
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