Racape Judith, Connan Francine, Hoebeke Johan, Choppin Jeannine, Guillet Jean-Gérard
Département d'Immunologie, Institut Cochin, F-75014 Paris, France.
Proc Natl Acad Sci U S A. 2006 Nov 28;103(48):18208-13. doi: 10.1073/pnas.0609029103. Epub 2006 Nov 20.
The binding of peptides to MHC class I molecules induces MHC/peptide complexes that have specific conformational features. Little is known about the molecular and structural bases required for an optimal MHC/peptide association able to induce a dominant T cell response. We sought to characterize the interaction between purified HLA-A3 molecules and four well known CD8 epitopes from HIV-1 proteins. To define the characteristics of HLA-peptide complex formation and to identify potential structural changes, we used biochemical assays that detect well formed complexes. We tested the amplitude, stability, and kinetic parameters of the interaction between HLA-A3, peptides, and anti-HLA mAbs. Our results show that the four epitopes Nef73-82, Pol325-333, Env37-46, and Gag20-28 bind strongly to HLA-A3 molecules and form very stable complexes that are detected with differential patterns of mAb reactivity. The most striking result is the nonrecognition of the HLA-A3/Gag20-28 complex by the A11.1M mAb specific to HLA-A3/-A11 alleles. To explain this observation, from the data published on HLA-A11 crystallographic structure, we propose molecular models of the HLA-A3 molecule complexed with Nef73-82, Pol325-333, and Gag20-28 epitopes. In the HLA-A3/Gag20-28 complex, we suggest that Arg at position P1 of the peptide may push the alpha2 helix residue Trp-167 of HLA-A3 and affect mAb recognition. Such observations may have great implications for T cell antigen receptor recognition and the immunogenicity of HLA/peptide complexes.
肽与MHC I类分子的结合会诱导出具有特定构象特征的MHC/肽复合物。对于能够诱导显性T细胞应答的最佳MHC/肽结合所需的分子和结构基础,我们知之甚少。我们试图表征纯化的HLA - A3分子与来自HIV - 1蛋白的四个著名CD8表位之间的相互作用。为了定义HLA - 肽复合物形成的特征并识别潜在的结构变化,我们使用了能检测形成良好复合物的生化分析法。我们测试了HLA - A3、肽和抗HLA单克隆抗体之间相互作用的幅度、稳定性和动力学参数。我们的结果表明,四个表位Nef73 - 82、Pol325 - 333、Env37 - 46和Gag20 - 28与HLA - A3分子强烈结合并形成非常稳定的复合物,这些复合物通过单克隆抗体反应性的差异模式得以检测。最显著的结果是,对HLA - A3/- A11等位基因具有特异性的A11.1M单克隆抗体无法识别HLA - A3/Gag20 - 28复合物。为了解释这一现象,基于已发表的HLA - A11晶体结构数据,我们提出了与Nef73 - 82、Pol325 - 333和Gag20 - 28表位复合的HLA - A3分子的分子模型。在HLA - A3/Gag20 - 28复合物中,我们认为肽P1位置的精氨酸可能会推动HLA - A3的α2螺旋残基色氨酸 - 167,并影响单克隆抗体的识别。这些观察结果可能对T细胞抗原受体识别以及HLA/肽复合物的免疫原性具有重大意义。