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Antigen potency and maximal efficacy reveal a mechanism of efficient T cell activation.


ABSTRACT: T cell activation, a critical event in adaptive immune responses, depends on productive interactions between T cell receptors (TCRs) and antigens presented as peptide-bound major histocompatibility complexes (pMHCs). Activated T cells lyse infected cells, secrete cytokines, and perform other effector functions with various efficiencies, which depend on the binding parameters of the TCR-pMHC complex. The mechanism through which binding parameters are translated to the efficiency of T cell activation, however, remains controversial. The "affinity model" suggests that the dissociation constant (KD) of the TCR-pMHC complex determines the response, whereas the "productive hit rate model" suggests that the off-rate (koff) is critical. Here, we used mathematical modeling to show that antigen potency, as determined by the EC50 (half-maximal effective concentration), which is used to support KD-based models, could not discriminate between the affinity and the productive hit rate models. Both models predicted a correlation between EC50 and KD, but only the productive hit rate model predicted a correlation between maximal efficacy (Emax), the maximal T cell response induced by pMHC, and koff. We confirmed the predictions made by the productive hit rate model in experiments with cytotoxic T cell clones and a panel of pMHC variants. Thus, we propose that the activity of an antigen is determined by both its potency (EC50) and maximal efficacy (Emax).

SUBMITTER: Dushek O 

PROVIDER: S-EPMC4143974 | biostudies-literature | 2011 Jun

REPOSITORIES: biostudies-literature

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Antigen potency and maximal efficacy reveal a mechanism of efficient T cell activation.

Dushek Omer O   Aleksic Milos M   Wheeler Richard J RJ   Zhang Hao H   Cordoba Shaun-Paul SP   Peng Yan-Chun YC   Chen Ji-Li JL   Cerundolo Vincenzo V   Dong Tao T   Coombs Daniel D   van der Merwe P Anton PA  

Science signaling 20110607 176


T cell activation, a critical event in adaptive immune responses, depends on productive interactions between T cell receptors (TCRs) and antigens presented as peptide-bound major histocompatibility complexes (pMHCs). Activated T cells lyse infected cells, secrete cytokines, and perform other effector functions with various efficiencies, which depend on the binding parameters of the TCR-pMHC complex. The mechanism through which binding parameters are translated to the efficiency of T cell activat  ...[more]

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