- Natarajan, Kannan;
- McShan, Andrew C;
- Jiang, Jiansheng;
- Kumirov, Vlad K;
- Wang, Rui;
- Zhao, Huaying;
- Schuck, Peter;
- Tilahun, Mulualem E;
- Boyd, Lisa F;
- Ying, Jinfa;
- Bax, Ad;
- Margulies, David H;
- Sgourakis, Nikolaos G
The molecular mechanism through which the interaction of a clonotypic αβ T-cell receptor (TCR) with a peptide-loaded major histocompatibility complex (p/MHC) leads to T-cell activation is not yet fully understood. Here we exploit a high-affinity TCR (B4.2.3) to examine the structural changes that accompany binding to its p/MHC ligand (P18-I10/H2-Dd). In addition to conformational changes in complementarity-determining regions (CDRs) of the TCR seen in comparison of unliganded and bound X-ray structures, NMR characterization of the TCR β-chain dynamics reveals significant chemical shift effects in sites removed from the MHC-binding site. Remodelling of electrostatic interactions near the Cβ H3 helix at the membrane-proximal face of the TCR, a region implicated in interactions with the CD3 co-receptor, suggests a possible role for an allosteric mechanism in TCR signalling. The contribution of these TCR residues to signal transduction is supported by mutagenesis and T-cell functional assays.