首页> 外文期刊>Human Immunology: Official Journal of the American Society for Histocompatibility and Immunogenetics >Structural aspects of HLA class I epitopes reacting with human monoclonal antibodies in Ig-binding, C1q-binding and lymphocytotoxicity assays
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Structural aspects of HLA class I epitopes reacting with human monoclonal antibodies in Ig-binding, C1q-binding and lymphocytotoxicity assays

机译:HLA类I表位的结构方面与IG结合,C1Q结合和淋巴细胞毒性测定中的人单克隆抗体反应

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摘要

This study addresses the reactivity patterns of human cytotoxic HLA class I epitope-specific monoclonal antibodies in Ig-binding and complement component C1q-binding Luminex assays in comparison with complement-dependent lymphocytotoxicity data reported at the 13th International HLA Workshop. Some monoclonal antibodies reacted similarly with epitope-carrying alleles in all three assays but others showed different reactivity patterns. These reactivity differences were analyzed with HLAMatchmaker and we incorporated the concept that eplets are essential parts of structural epitopes which can contact the six Complementarity Determining Regions (CDRs) of antibody. The data show that technique-dependent reactivity patterns are associated with distinct differences between polymorphic amino acid configurations on eplet-defined structural epitopes.The findings have been viewed in context of antigen-antibody complex formation that results in the release of free energy necessary to stabilize binding and to induce conformational changes in the antibody molecule to expose the C1q binding site, the first step of complement activation. Moreover the amount of free energy should be sufficient to induce a conformational change of C1q thereby initiating the first stages of the classical complement cascade leading to lymphocytotoxicity. The complement-fixing properties of HLA antibodies require not only specific recognition of eplets but also depend on interactions of other CDRs with critical amino acid configurations within the structural epitope. Eplet-carrying alleles that lack such configurations may only bind with antibody. This concept is important to our understanding whether or not complement-fixing donor-specific HLA antibodies can initiate antibody-mediated rejection.
机译:该研究解决了IG结合和补体组分C1Q结合植物蛋白I型表位特异性单克隆抗体的反应性模式,与第13届国际HLA车间报道的补体依赖性淋巴细胞毒性数据相比。在所有三种测定中,一些单克隆抗体类似地与携带表位携带等位基因反应,但其他单克隆的等位基因类似地显示出不同的反应性模式。通过霍拉塞特制造商分析了这些反应性差异,并纳入了eplets是结构表位的必要条件的概念,其可以接触抗体的六个互补确定区域(CDR)。该数据表明,技术依赖性反应性模式与eplet定义的结构表位上的多态性氨基酸配置之间的不同差异有关。在抗原 - 抗体复合物形成的背景下观察结果,导致稳定所必需的自由能释放结合和诱导抗体分子的构象变化暴露C1Q结合位点,其补充活化的第一步骤。此外,自由能量应该足以诱导C1Q的构象变化,从而发起经典补体级联的第一阶段,导致淋巴细胞毒性。 HLA抗体的补体固定性质不仅需要特异性识别EPLET,而且取决于其他CDR与结构表位内的临界氨基酸配置的相互作用。缺乏此类配置的EPLET携带等位基因可以仅与抗体结合。这一概念对我们理解是否可以补充定影的供体特异性HLA抗体来引发抗体介导的排斥来重要。

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