Insights into T cell recognition of antigen: Significance of two-dimensional kinetic parameters

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Abstract

The T cell receptor (TCR) interacts with peptide-major histocompatibility complex (pMHC) to enable T cell development and trigger adaptive immune responses. For this reason, TCR:pMHC interactions have been intensely studied for over two decades. However, the details of how various binding parameters impact T cell activation remain elusive. Most measurements were made using recombinant proteins by surface plasmon resonance, a three-dimensional (3D) technique in which fluid-phase receptors and ligands are removed from their cellular environment. This approach found TCR:pMHC interactions with relatively low affinities and slow off-rates for agonist peptides. Newer generation techniques have analyzed TCR:pMHC interactions in two dimensions (2D), with both proteins anchored in apposing plasma membranes. These approaches reveal in situ TCR:pMHC interaction kinetics that are of high affinity and exhibit rapid on-and off-rates upon interaction with agonist ligands. Importantly, 2D binding parameters correlate better with T cell functional responses to a spectrum of ligands than 3D measures. © 2012 Edwards, Zarnitsyna, Hood, Evavold and Zhu.

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Edwards, L. J., Zarnitsyna, V. I., Hood, J. D., Evavold, B. D., & Zhu, C. (2012). Insights into T cell recognition of antigen: Significance of two-dimensional kinetic parameters. Frontiers in Immunology. https://doi.org/10.3389/fimmu.2012.00086

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