Castelli Florence A, Buhot Cécile, Sanson Alain, Zarour Hassane, Pouvelle-Moratille Sandra, Nonn Céline, Gahery-Ségard Hanne, Guillet Jean-Gérard, Ménez André, Georges Bertrand, Maillère Bernard
Protein Engineering and Research Department, Commissariat à l'Energie Atomique-Saclay, Gif sur Yvette, France.
J Immunol. 2002 Dec 15;169(12):6928-34. doi: 10.4049/jimmunol.169.12.6928.
Among HLA-DP specificities, HLA-DP4 specificity involves at least two molecules, HLA-DPA10103/DPB10401 (DP401) and HLA-DPA10103/DPB10402 (DP402), which differ from each other by only three residues. Together, they are present worldwide at an allelic frequency of 20-60% and are the most abundant human HLA II alleles. Strikingly, the peptide-binding specificities of these molecules have never been investigated. Hence, in this study, we report the peptide-binding motifs of both molecules. We first set up a binding assay specific for the immunopurified HLA-DP4 molecules. Using multiple sets of synthetic peptides, we successfully defined the amino acid preferences of the anchor residues. With these assays, we were also able to identify new peptide ligands from allergens and viral and tumor Ags. DP401 and DP402 exhibit very similar patterns of recognition in agreement with molecular modeling of the complexes. Pockets P1 and P6 accommodate the main anchor residues and interestingly contain only two polymorphic residues, beta86 and beta11, respectively. Both positions are almost dimorphic and thus produce a limited number of pocket combinations. Taken together, our results support the existence of three main binding supertypes among HLA-DP molecules and should significantly contribute to the identification of universal epitopes to be used in peptide-based vaccines for cancer, as well as for allergic or infectious diseases.
在HLA - DP特异性中,HLA - DP4特异性涉及至少两种分子,即HLA - DPA10103/DPB10401(DP401)和HLA - DPA10103/DPB10402(DP402),它们彼此之间仅相差三个残基。它们在全球范围内的等位基因频率为20% - 60%,是人类中最丰富的HLA II类等位基因。引人注目的是,这些分子的肽结合特异性从未被研究过。因此,在本研究中,我们报告了这两种分子的肽结合基序。我们首先建立了一种针对免疫纯化的HLA - DP4分子的结合测定法。使用多组合成肽,我们成功确定了锚定残基的氨基酸偏好。通过这些测定法,我们还能够从过敏原、病毒和肿瘤抗原中鉴定出新的肽配体。DP401和DP402表现出非常相似的识别模式,这与复合物的分子模型一致。口袋P1和P6容纳主要的锚定残基,有趣的是,它们分别仅包含两个多态性残基,即β86和β11。这两个位置几乎是二态的,因此产生的口袋组合数量有限。综上所述,我们的结果支持HLA - DP分子中存在三种主要的结合超型,这对于鉴定用于癌症、过敏性或感染性疾病的基于肽的疫苗中的通用表位应具有重要贡献。