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抗肽抗体介导免疫的B细胞表位预测中亲和力限度的意义

On the meaning of affinity limits in B-cell epitope prediction for antipeptide antibody-mediated immunity.

作者信息

Caoili Salvador Eugenio C

机构信息

Department of Biochemistry and Molecular Biology, College of Medicine, University of the Philippines Manila, Room 101, Medical Annex Building, 547 Pedro Gil Street, Ermita, Manila 1000, Philippines.

出版信息

Adv Bioinformatics. 2012;2012:346765. doi: 10.1155/2012/346765. Epub 2012 Nov 14.

Abstract

B-cell epitope prediction aims to aid the design of peptide-based immunogens (e.g., vaccines) for eliciting antipeptide antibodies that protect against disease, but such antibodies fail to confer protection and even promote disease if they bind with low affinity. Hence, the Immune Epitope Database (IEDB) was searched to obtain published thermodynamic and kinetic data on binding interactions of antipeptide antibodies. The data suggest that the affinity of the antibodies for their immunizing peptides appears to be limited in a manner consistent with previously proposed kinetic constraints on affinity maturation in vivo and that cross-reaction of the antibodies with proteins tends to occur with lower affinity than the corresponding reaction of the antibodies with their immunizing peptides. These observations better inform B-cell epitope prediction to avoid overestimating the affinity for both active and passive immunization; whereas active immunization is subject to limitations of affinity maturation in vivo and of the capacity to accumulate endogenous antibodies, passive immunization may transcend such limitations, possibly with the aid of artificial affinity-selection processes and of protein engineering. Additionally, protein disorder warrants further investigation as a possible supplementary criterion for B-cell epitope prediction, where such disorder obviates thermodynamically unfavorable protein structural adjustments in cross-reactions between antipeptide antibodies and proteins.

摘要

B细胞表位预测旨在辅助设计基于肽的免疫原(如疫苗),以引发能预防疾病的抗肽抗体,但如果这些抗体以低亲和力结合,则无法提供保护,甚至会促进疾病发展。因此,对免疫表位数据库(IEDB)进行了搜索,以获取已发表的关于抗肽抗体结合相互作用的热力学和动力学数据。数据表明,抗体对其免疫肽的亲和力似乎受到限制,这种限制方式与先前提出的体内亲和力成熟的动力学约束一致,并且抗体与蛋白质的交叉反应往往比抗体与其免疫肽的相应反应具有更低的亲和力。这些观察结果能更好地指导B细胞表位预测,以避免高估主动免疫和被动免疫的亲和力;主动免疫受到体内亲和力成熟以及积累内源性抗体能力的限制,而被动免疫可能会超越这些限制,这可能借助人工亲和力选择过程和蛋白质工程来实现。此外,蛋白质无序作为B细胞表位预测的一种可能的补充标准值得进一步研究,因为这种无序可避免抗肽抗体与蛋白质交叉反应中热力学上不利的蛋白质结构调整。

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