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首页> 外文期刊>The Journal of Experomental Medicine >Influence of the NH2-terminal Amino Acid of the T Cell Receptor α Chain on Major Histocompatibility Complex (MHC) Class II + Peptide Recognition
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Influence of the NH2-terminal Amino Acid of the T Cell Receptor α Chain on Major Histocompatibility Complex (MHC) Class II + Peptide Recognition

机译:T细胞受体α链的NH2末端氨基酸对主要组织相容性复合物(MHC)II类+肽识别的影响

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The α/β T cell receptor (TCR) recognizes peptide fragments bound in the groove of major histocompatibility complex (MHC) molecules. We modified the TCR α chain from a mouse T cell hybridoma and tested its ability to reconstitute TCR expression and function in an α chain–deficient variant of the hybridoma. The modified α chain differed from wild type only in its leader peptide and mature NH2-terminal amino acid. Reconstituted cell surface TCR complexes reacted normally with anti-TCR and anti-CD3 antibodies. Although cross-linking of this TCR with an antibody to the TCR idiotype elicited vigorous T cell hybridoma activation, stimulation with its natural MHC + peptide ligand did not. We demonstrated that this phenotype could be reproduced simply by substituting the glutamic acid (E) at the mature NH2 terminus of the wild type TCR α chain with aspartic acid (D). The substitution also dramatically reduced the affinity of soluble α/β-TCR heterodimers for soluble MHC + peptide molecules in a cell-free system, suggesting that it did not exert its effect simply by disrupting TCR interactions with accessory molecules on the hybridoma. These results demonstrate for the first time that amino acids which are not in the canonical TCR complementarity determining regions can be critical in determining how the TCR engages MHC + peptide.
机译:α/βT细胞受体(TCR)识别结合在主要组织相容性复合体(MHC)分子凹槽中的肽片段。我们修饰了来自小鼠T细胞杂交瘤的TCRα链,并测试了其在缺乏α链的杂交瘤变体中重建TCR表达和功能的能力。修饰的α链仅在其前导肽和成熟的NH 2末端氨基酸方面不同于野生型。重构的细胞表面TCR复合物通常与抗TCR和抗CD3抗体反应。尽管该TCR与针对TCR独特型的抗体的交联引起了强烈的T细胞杂交瘤活化,但是其天然MHC +肽配体的刺激却没有。我们证明该表型可以简单地通过用天冬氨酸(D)取代野生型TCRα链的成熟NH2末端的谷氨酸(E)来复制。取代还显着降低了无细胞系统中可溶性α/β-TCR异二聚体对可溶性MHC +肽分子的亲和力,表明它并不能仅仅通过破坏TCR与杂交瘤上辅助分子的相互作用来发挥作用。这些结果首次证明,在规范TCR互补决定区中的氨基酸对于确定TCR如何与MHC +肽结合至关重要。

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