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T细胞受体对脂质抗原的分子识别。

Molecular recognition of lipid antigens by T cell receptors.

作者信息

Grant E P, Degano M, Rosat J P, Stenger S, Modlin R L, Wilson I A, Porcelli S A, Brenner M B

机构信息

Lymphocyte Biology Section, Division of Rheumatology, Immunology, and Allergy, Department of Medicine, Brigham & Women's Hospital and Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Exp Med. 1999 Jan 4;189(1):195-205. doi: 10.1084/jem.189.1.195.

Abstract

The T cell antigen receptor (TCR) mediates recognition of peptide antigens bound in the groove of major histocompatibility complex (MHC) molecules. This dual recognition is mediated by the complementarity-determining residue (CDR) loops of the alpha and beta chains of a single TCR which contact exposed residues of the peptide antigen and amino acids along the MHC alpha helices. The recent description of T cells that recognize hydrophobic microbial lipid antigens has challenged immunologists to explain, in molecular terms, the nature of this interaction. Structural studies on the murine CD1d1 molecule revealed an electrostatically neutral putative antigen-binding groove beneath the CD1 alpha helices. Here, we demonstrate that alpha/beta TCRs, when transferred into TCR-deficient recipient cells, confer specificity for both the foreign lipid antigen and CD1 isoform. Sequence analysis of a panel of CD1-restricted, lipid-specific TCRs reveals the incorporation of template-independent N nucleotides that encode diverse sequences and frequent charged basic residues at the V(D)J junctions. These sequences permit a model for recognition in which the TCR CDR3 loops containing charged residues project between the CD1 alpha helices, contacting the lipid antigen hydrophilic head moieties as well as adjacent CD1 residues in a manner that explains antigen specificity and CD1 restriction.

摘要

T细胞抗原受体(TCR)介导对结合在主要组织相容性复合体(MHC)分子凹槽中的肽抗原的识别。这种双重识别由单个TCR的α链和β链的互补决定残基(CDR)环介导,这些环接触肽抗原的暴露残基以及沿MHCα螺旋的氨基酸。最近对识别疏水性微生物脂质抗原的T细胞的描述促使免疫学家从分子角度解释这种相互作用的本质。对小鼠CD1d1分子的结构研究揭示了在CD1α螺旋下方有一个静电中性的假定抗原结合凹槽。在此,我们证明,当α/β TCR转移到TCR缺陷的受体细胞中时,赋予了对外来脂质抗原和CD1同种型的特异性。一组CD1限制性、脂质特异性TCR的序列分析揭示了非模板依赖性N核苷酸的掺入,这些核苷酸编码不同的序列,并且在V(D)J连接处频繁出现带电荷的碱性残基。这些序列允许建立一种识别模型,其中含有带电荷残基的TCR CDR3环在CD1α螺旋之间突出,以一种解释抗原特异性和CD1限制性的方式接触脂质抗原的亲水头部分以及相邻的CD1残基。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6c1/1887682/0381c82a33f5/JEM981815.f1.jpg

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