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An allosteric site in the T-cell receptor Cβ domain plays a critical signalling role

机译:T细胞受体Cβ结构域的变构位点起关键信号作用

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摘要

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.
机译:尚不完全了解克隆型αβT细胞受体(TCR)与加载肽的主要组织相容性复合物(p / MHC)相互作用的分子机制。在这里,我们利用高亲和力的TCR(B4.2.3)来检查与其p / MHC配体(P18-I10 / H2-D d )结合时的结构变化。除了在未配位和结合的X射线结构比较中观察到的TCR互补决定区(CDR)的构象变化外,TCRβ链动力学的NMR表征还显示出从MHC结合中除去的位点具有明显的化学位移效应现场。在TCR膜近端表面CβH3螺旋附近的静电相互作用的重塑,这是与CD3共受体相互作用的区域,暗示了变构机制在TCR信号传导中的可能作用。这些TCR残基对信号转导的贡献得到了诱变和T细胞功能测定的支持。

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