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A novel TNFα antagonizing peptide-Fc fusion protein designed based on CDRs of TNFα neutralizing monoclonal antibody

机译:基于TNFα中和单克隆抗体CDR设计的新型TNFα拮抗肽-Fc融合蛋白

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The variable regions of antibody molecules bind antigens with high affinity and specificity. The binding sites are imparted largely to the hypervariable portions (i.e., CDRs) of the variable region. Peptides derived from CDRs can bind antigen with similar specificity acting as mimic of antibody and become drug-designing core, although with markedly lower affinity. In order to increase the affinity and bioactivity, in this study, a novel peptide (PT) designed on CDRs of a TNFα neutralizing monoclonal antibody Z12 was linked with Fc fragment of human IgG1. The interaction mode of PT-linker-Fc (PLF) with TNFα was analyzed with computer-guided molecular modeling method. After expression in Escherichia coli and purification, recombinant PT-linker-Fc could bind directly with the TNFα coated on the ELISA plates. Furthermore, PLF could competitively inhibit the binding of Z12 to TNFα and also inhibit the TNFα-induced cytotpxicity on L929 cells. The TNFα antagonizing activity of PLF was significantly higher than that of the free peptide. This study highlights the potential of human Fc to enhance the potency of peptides designed on the CDRs of antibodies and could be useful in developing new TNFα antagonists.
机译:抗体分子的可变区以高亲和力和特异性结合抗原。结合位点主要赋予可变区的高变部分(即CDR)。衍生自CDR的肽可以相似的特异性结合抗原,起到类似抗体的作用,并成为药物设计的核心,尽管亲和力明显较低。为了增加亲和力和生物活性,在这项研究中,将在TNFα中和性单克隆抗体Z12的CDR上设计的新型肽(PT)与人IgG1的Fc片段连接。用计算机指导的分子建模方法分析了PT-接头-Fc(PLF)与TNFα的相互作用方式。在大肠杆菌中表达并纯化后,重组PT-linker-Fc可以直接与ELISA板上包被的TNFα结合。此外,PLF可以竞争性地抑制Z12与TNFα的结合,也可以抑制TNFα诱导的L929细胞的细胞吞噬能力。 PLF的TNFα拮抗活性明显高于游离肽。这项研究强调了人Fc增强设计在抗体CDR上的肽效力的潜力,可用于开发新的TNFα拮抗剂。

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