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与肽-主要组织相容性复合体结合的高亲和力人类T细胞受体的晶体结构揭示了天然对角结合几何结构。

Crystal structures of high affinity human T-cell receptors bound to peptide major histocompatibility complex reveal native diagonal binding geometry.

作者信息

Sami Malkit, Rizkallah Pierre J, Dunn Steve, Molloy Peter, Moysey Ruth, Vuidepot Annelise, Baston Emma, Todorov Penio, Li Yi, Gao Feng, Boulter Jonathan M, Jakobsen Bent K

机构信息

Avidex Limited (subsidiary of Medigene Ag), 57c Milton Park, Abingdon, Oxon OX14 4RX, UK.

出版信息

Protein Eng Des Sel. 2007 Aug;20(8):397-403. doi: 10.1093/protein/gzm033. Epub 2007 Jul 20.

Abstract

Naturally selected T-cell receptors (TCRs) are characterised by low binding affinities, typically in the range 1-100 microM. Crystal structures of syngeneic TCRs bound to peptide major histocompatibility complex (pMHC) antigens exhibit a conserved mode of binding characterised by a distinct diagonal binding geometry, with poor shape complementarity (SC) between receptor and ligand. Here, we report the structures of three in vitro affinity enhanced TCRs that recognise the pMHC tumour epitope NY-ESO(157-165) (SLLMWITQC). These crystal structures reveal that the docking mode for the high affinity TCRs is identical to that reported for the parental wild-type TCR, with only subtle changes in the mutated complementarity determining regions (CDRs) that form contacts with pMHC; both CDR2 and CDR3 mutations act synergistically to improve the overall affinity. Comparison of free and bound TCR structures for both wild-type and a CDR3 mutant reveal an induced fit mechanism arising from restructuring of CDR3 loops which allows better peptide binding. Overall, an increased interface area, improved SC and additional H-bonding interactions are observed, accounting for the increase in affinity. Most notably, there is a marked increase in the SC for the central methionine and tryptophan peptide motif over the native TCR.

摘要

自然选择的T细胞受体(TCR)的特点是结合亲和力较低,通常在1-100微摩尔范围内。与肽主要组织相容性复合体(pMHC)抗原结合的同基因TCR的晶体结构表现出一种保守的结合模式,其特征是独特的对角结合几何形状,受体与配体之间的形状互补性(SC)较差。在这里,我们报告了三种识别pMHC肿瘤表位NY-ESO(157-165)(SLLMWITQC)的体外亲和力增强的TCR的结构。这些晶体结构表明,高亲和力TCR的对接模式与亲本野生型TCR的对接模式相同,只是在与pMHC形成接触的突变互补决定区(CDR)中只有细微变化;CDR2和CDR3突变均协同作用以提高整体亲和力。对野生型和CDR3突变体的游离和结合TCR结构的比较揭示了一种由CDR3环的重组引起的诱导契合机制,该机制允许更好的肽结合。总体而言,观察到界面面积增加、SC改善和额外的氢键相互作用,这解释了亲和力的增加。最值得注意的是,与天然TCR相比,中央甲硫氨酸和色氨酸肽基序的SC有显著增加。

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