首页> 外文期刊>Molecular Immunology >Anti-HLA-E mAb 3D12 mimics MEM-E/02 in binding to HLA-B and HLA-C alleles: Web-tools validate the immunogenic epitopes of HLA-E recognized by the antibodies.
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Anti-HLA-E mAb 3D12 mimics MEM-E/02 in binding to HLA-B and HLA-C alleles: Web-tools validate the immunogenic epitopes of HLA-E recognized by the antibodies.

机译:抗HLA-E mAb 3D12模仿MEM-E / 02与HLA-B和HLA-C等位基因的结合:网络工具验证了抗体识别的HLA-E的免疫原性表位。

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摘要

HLA-E shares several peptide sequences with HLA-class Ia molecules. Therefore, anti-HLA-E antibodies that recognize the shared sequences may bind to HLA-class Ia alleles. This hypothesis was validated with a murine anti-HLA-E monoclonal antibody (mAb) MEM-E/02, which reacted with microbeads coated with several HLA-B and HLA-C antigens. In this report, the hypothesis was reexamined with another mAb 3D12, considered to be specific for HLA-E. The antibody binding is evaluated by measuring mean fluorescence index [MFI] with Luminex Multiplex Flow-Cytometric technology. The peptide-inhibition experiments are carried out with synthetic shared peptides, most prevalent to HLA-E and HLA-Ia alleles. The results showed that mAb 3D12 simulated MEM-E/02 in recognizing several HLA-B and HLA-C antigens. Both 3D12 and MEM-E/02 did not bind to HLA-A, HLA-F and HLA-G molecules. As observed with MEM-E/02, binding of 3D12 to HLA-E is inhibited by the peptides sequences (115)QFAYDGKDY(123) and (137)DTAAQI(142). Decrease in binding of mAb 3D12 to HLA class Ia, after heat treatment of antigen coated microbeads, supports the contention that the epitope may be located at the outside of the thermodynamically stable and structure-based web-tools were employed to validate the discontinuous epitopes recognized by the mAbs. The scores obtained by these web-tools distinguished the shared peptide sequences that inhibited the mAb binding to HLA-E. Furthermore, ElliPro web tool points out that both mAbs recognize the conformational discontinuous epitopes (the shared inhibitory peptide sequences) in the secondary structure of the HLA-E molecule. The study favors the contention that the domain of the shared inhibitory peptide sequences may be the most immunogenic site of HLA-E molecule. It also postulates and clarifies that amino acid substitution on or near the binding domains may account for the lack of cross reactivity of 3D12 and MEM-E/02 with HLA-A, HLA-F and HLA-G molecules.
机译:HLA-E与HLA类Ia分子共享多个肽序列。因此,识别共有序列的抗HLA-E抗体可与HLA Ia类等位基因结合。小鼠抗HLA-E单克隆抗体(mAb)MEM-E / 02验证了这一假设,该抗体与包被有几种HLA-B和HLA-C抗原的微珠反应。在此报告中,用另一种认为对HLA-E特异的mAb 3D12重新审查了该假设。通过使用Luminex Multiplex流式细胞术技术测量平均荧光指数[MFI]评估抗体结合。用最常见于HLA-E和HLA-1a等位基因的合成共享肽进行肽抑制实验。结果显示,mAb 3D12模拟MEM-E / 02识别几种HLA-B和HLA-C抗原。 3D12和MEM-E / 02均未结合HLA-A,HLA-F和HLA-G分子。如用MEM-E / 02观察到的,肽序列(115)QFAYDGKDY(123)和(137)DTAAQI(142)抑制3D12与HLA-E的结合。在对抗原包被的微珠进行热处理后,mAb 3D12与HLA Ia类的结合减少,支持以下论点:表位可能位于热力学稳定的外部,并且使用基于结构的网络工具来验证公认的不连续表位通过单克隆抗体。通过这些网络工具获得的分数区分了抑制mAb与HLA-E结合的共享肽序列。此外,ElliPro Web工具指出,两个mAb都能识别HLA-E分子二级结构中的构象不连续表位(共有抑制性肽序列)。该研究支持以下观点:共有的抑制性肽序列的结构域可能是HLA-E分子的最具免疫原性的位点。它还假定并阐明结合结构域上或附近的氨基酸取代可能解释了3D12和MEM-E / 02与HLA-A,HLA-F和HLA-G分子缺乏交叉反应性的原因。

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