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人类γδ T细胞抗原受体的结构

Structure of a human gammadelta T-cell antigen receptor.

作者信息

Allison T J, Winter C C, Fournié J J, Bonneville M, Garboczi D N

机构信息

Laboratory of Immunogenetics, National Institute of Allergy and Infectious Diseases, Rockville, Maryland 20852, USA.

出版信息

Nature. 2001 Jun 14;411(6839):820-4. doi: 10.1038/35081115.

Abstract

T-cell antigen receptors composed of gamma and delta polypeptide chains (gammadelta TCRs) can directly recognize antigens in the form of intact proteins or non-peptide compounds, unlike alphabeta TCRs, which recognize antigens bound to major histocompatibility complex molecules (MHC). About 5% of peripheral blood T cells bear gammadelta TCRs, most of which recognize non-peptide phosphorylated antigens. Here we describe the 3.1 A resolution structure of a human gammadelta TCR from a T-cell clone that is phosphoantigen-reactive. The orientation of the variable (V) and constant (C) regions of the gammadelta TCR is unique when compared with alphabeta TCRs or antibodies, and results from an unusually small angle between the Vgamma and Cgamma domains. The complementarity-determining regions (CDRs) of the V domains exhibit a chemically reasonable binding site for phosphorylated antigens, providing a possible explanation for the canonical usage of the Vgamma9 and Vdelta2 gene segments by phosphoantigen-reactive receptors. Although the gammadelta TCR V domains are similar in overall structure to those of alphabeta TCRs, gammadelta TCR C domains are markedly different. Structural differences in Cgamma and Cdelta, and in the location of the disulphide bond between them, may enable gammadelta TCRs to form different recognition/signalling complexes than alphabeta TCRs.

摘要

由γ和δ多肽链组成的T细胞抗原受体(γδTCR)能够直接识别完整蛋白质或非肽类化合物形式的抗原,这与识别与主要组织相容性复合体分子(MHC)结合的抗原的αβTCR不同。大约5%的外周血T细胞带有γδTCR,其中大多数识别非肽磷酸化抗原。在此,我们描述了来自一个对磷酸化抗原具有反应性的T细胞克隆的人γδTCR的3.1埃分辨率结构。与αβTCR或抗体相比,γδTCR的可变(V)区和恒定(C)区的取向是独特的,这是由于Vγ和Cγ结构域之间的角度异常小所致。V结构域的互补决定区(CDR)对磷酸化抗原表现出一个化学上合理的结合位点,这为磷酸化抗原反应性受体对Vγ9和Vδ2基因片段的典型使用提供了一种可能的解释。尽管γδTCR的V结构域在整体结构上与αβTCR的相似,但γδTCR的C结构域明显不同。Cγ和Cδ的结构差异以及它们之间二硫键的位置,可能使γδTCR能够形成与αβTCR不同的识别/信号复合体。

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