Efficient T cell activation requires an optimal dwell-time of interaction between the TCR and the pMHC complex

AM Kalergis, N Boucheron, MA Doucey, E Palmieri… - Nature …, 2001 - nature.com
AM Kalergis, N Boucheron, MA Doucey, E Palmieri, EC Goyarts, Z Vegh, IF Luescher…
Nature immunology, 2001nature.com
Cytotoxic T cell (CTL) activation by antigen requires the specific detection of peptide–major
histo-compatibility class I (pMHC) molecules on the target-cell surface by the T cell receptor
(TCR). We examined the effect of mutations in the antigen-binding site of a K b-restricted
TCR on T cell activation, antigen binding and dissociation from antigen. These parameters
were also examined for variants derived from a K d-restricted peptide that was recognized
by a CTL clone. Using these two independent systems, we show that T cell activation can be …
Abstract
Cytotoxic T cell (CTL) activation by antigen requires the specific detection of peptide–major histo-compatibility class I (pMHC) molecules on the target-cell surface by the T cell receptor (TCR). We examined the effect of mutations in the antigen-binding site of a K b-restricted TCR on T cell activation, antigen binding and dissociation from antigen. These parameters were also examined for variants derived from a K d-restricted peptide that was recognized by a CTL clone. Using these two independent systems, we show that T cell activation can be impaired by mutations that either decrease or increase the binding half-life of the TCR-pMHC interaction. Our data indicate that efficient T cell activation occurs within an optimal dwell-time range of TCR-pMHC interaction. This restricted dwell-time range is consistent with the exclusion of either extremely low or high affinity T cells from the expanded population during immune responses.
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