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探索用于产生针对不连续蛋白质表位的抗体的肽模拟物。

Exploring peptide mimics for the production of antibodies against discontinuous protein epitopes.

机构信息

Department of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, BC, Canada.

出版信息

Mol Immunol. 2010 Feb;47(5):1137-48. doi: 10.1016/j.molimm.2009.10.015. Epub 2009 Dec 23.

Abstract

Peptide "mimics" (mimotopes) of linear protein epitopes and carbohydrate epitopes have been successfully used as immunogens to elicit cross-reactive antibodies against their cognate epitopes; however, immunogenic mimicry has been difficult to achieve for discontinuous protein epitopes. To explore this, we developed from phage-displayed peptide libraries optimized peptide mimics for three well-characterized discontinuous epitopes on hen egg lysozyme and horse cytochrome c. The peptides competed with their cognate antigens for antibody binding, displayed affinities in the nM range, and shared critical binding residues with their native epitopes. Yet, while immunogenic, none of the peptides elicited antibodies that cross-reacted with their cognate antigens. We analyzed the 3-D structure of the site within each discontinuous epitope that shared critical binding residues with its peptide mimic, and observed that in each case it formed a ridge-like patch on the epitope; in no case did it cover most or all of the epitope. Thus, the peptides' lack of immunogenic mimicry could be attributed to their inability to recapitulate the topological features of their cognate epitopes. Our results suggest that direct peptide immunizations are not a practical strategy for generating targeted antibody responses against discontinuous epitopes.

摘要

线性蛋白表位和碳水化合物表位的肽“模拟物”(模拟表位)已被成功用作免疫原,以引发针对其同源表位的交叉反应性抗体;然而,对于不连续的蛋白表位,免疫模拟一直难以实现。为了探索这一点,我们从噬菌体展示的肽文库中开发了针对鸡卵溶菌酶和马细胞色素 c 上三个特征明确的不连续表位的优化肽模拟物。这些肽与它们的同源抗原竞争抗体结合,显示出纳摩尔范围内的亲和力,并与它们的天然表位共享关键结合残基。然而,尽管具有免疫原性,但没有一种肽能诱导与它们的同源抗原发生交叉反应的抗体。我们分析了与肽模拟物共享关键结合残基的每个不连续表位内的三维结构,观察到在每种情况下,它在表位上形成了一个类似脊的斑块;在任何情况下,它都没有覆盖大部分或全部表位。因此,这些肽缺乏免疫模拟性可以归因于它们无法重现其同源表位的拓扑特征。我们的结果表明,直接肽免疫不是针对不连续表位产生靶向抗体反应的实用策略。

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