Asymmetry in the recognition of antigen: self class II MHC and non-self class II MHC molecules by the same T-cell receptor.

P Portoles, J M Rojo, C A Janeway
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Abstract

One of the most puzzling observations in immunology is the very high frequency of T cells reactive to non-self MHC molecules. Earlier studies from our laboratory suggested that the same receptor on a cloned T-cell line recognized both self-class II MHC: antigen complexes and non-self class II MHC, the latter at a significantly lower affinity. This suggested that alloreactivity resulted from low affinity cross-reactions of the T-cell receptor to a ligand presented at high multiplicity. The present studies address the question of whether these two ligands are recognized symmetrically by this receptor, and of whether different subsites in the receptor recognize both classes of ligands equally. In the present studies, we have greatly extended our analysis of T-cell receptor recognition of antigen: self class II MHC and non-self class II MHC. Using Fab fragments of monoclonal anti-T-cell receptor antibodies as monovalent competitive antagonists of T-cell activation, the response of cloned H-2k T-cell line D10 to conalbumin: I-Ak and to the allogeneic ligands I-Ab,v,p,q was analyzed with monoclonal antibodies directed at 3 clonotypic epitopes and one on V beta. These studies confirmed our earlier finding that D10 activation by antigen: self class II MHC is more difficult to inhibit with clonotypic Fab fragments binding to three distinct clonotypic epitopes than are responses to non-self MHC. More importantly, the Fab fragment of anti-V beta monoclonal antibodies preferentially inhibit activation by antigen: self class II MHC, and do so more efficiently than expected, based on the numbers of molecules of Fab bound.(ABSTRACT TRUNCATED AT 250 WORDS)

抗原识别的不对称性:自身II类MHC和非自身II类MHC分子被相同的t细胞受体所识别。
免疫学中最令人困惑的观察之一是T细胞对非自体MHC分子的反应频率非常高。我们实验室早期的研究表明,克隆t细胞系上的同一受体既能识别自身II类MHC:抗原复合物,也能识别非自身II类MHC,后者的亲和力明显较低。这表明同种异体反应性是由t细胞受体对高多样性配体的低亲和力交叉反应引起的。目前的研究解决了这两种配体是否被该受体对称识别的问题,以及受体的不同亚位是否平等地识别这两类配体。在目前的研究中,我们极大地扩展了t细胞受体识别抗原的分析:自身II类MHC和非自身II类MHC。利用单克隆抗t细胞受体抗体Fab片段作为t细胞活化的单价竞争性拮抗剂,用3个克隆型表位和1个v β表位的单克隆抗体分析了克隆的H-2k t细胞系D10对conalbumin: I-Ak和异体配体I-Ab、v、p、q的反应。这些研究证实了我们早期的发现,与非自身MHC相比,克隆型Fab片段结合三种不同的克隆型表位更难抑制抗原:自身II类MHC对D10的激活。更重要的是,抗v β单克隆抗体的Fab片段优先抑制抗原:自身II类MHC的激活,并且基于Fab结合的分子数量,比预期的更有效。(摘要删节250字)
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