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Mechanical forces impair antigen discrimination by reducing differences in T-cell receptor/peptide-MHC off-rates.


ABSTRACT: T cells use their T-cell receptors (TCRs) to discriminate between lower-affinity self and higher-affinity foreign peptide major-histocompatibility-complexes (pMHCs) based on the TCR/pMHC off-rate. It is now appreciated that T cells generate mechanical forces during this process but how force impacts the TCR/pMHC off-rate remains debated. Here, we measured the effect of mechanical force on the off-rate of multiple TCR/pMHC interactions. Unexpectedly, we found that lower-affinity TCR/pMHCs with faster solution off-rates were more resistant to mechanical force (weak slip or catch bonds) than higher-affinity interactions (strong slip bonds). This was confirmed by molecular dynamics simulations. Consistent with these findings, we show that the best-characterized catch bond, involving the OT-I TCR, has a low affinity and an exceptionally fast solution off-rate. Our findings imply that reducing forces on the TCR/pMHC interaction improves antigen discrimination, and we suggest a role for the adhesion receptors CD2 and LFA-1 in force-shielding the TCR/pMHC interaction.

SUBMITTER: Pettmann J 

PROVIDER: S-EPMC10068313 | biostudies-literature | 2023 Apr

REPOSITORIES: biostudies-literature

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Mechanical forces impair antigen discrimination by reducing differences in T-cell receptor/peptide-MHC off-rates.

Pettmann Johannes J   Awada Lama L   Różycki Bartosz B   Huhn Anna A   Faour Sara S   Kutuzov Mikhail M   Limozin Laurent L   Weikl Thomas R TR   van der Merwe P Anton PA   Robert Philippe P   Dushek Omer O  

The EMBO journal 20221209 7


T cells use their T-cell receptors (TCRs) to discriminate between lower-affinity self and higher-affinity foreign peptide major-histocompatibility-complexes (pMHCs) based on the TCR/pMHC off-rate. It is now appreciated that T cells generate mechanical forces during this process but how force impacts the TCR/pMHC off-rate remains debated. Here, we measured the effect of mechanical force on the off-rate of multiple TCR/pMHC interactions. Unexpectedly, we found that lower-affinity TCR/pMHCs with fa  ...[more]

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