首页> 外文期刊>Toxins >Structural Characterization of Humanized Nanobodies with Neutralizing Activity against the Bordetella pertussis CyaA-Hemolysin: Implications for a Potential Epitope of Toxin-Protective Antigen
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Structural Characterization of Humanized Nanobodies with Neutralizing Activity against the Bordetella pertussis CyaA-Hemolysin: Implications for a Potential Epitope of Toxin-Protective Antigen

机译:具有对百日咳博德特氏菌CyaA-溶血素的中和活性的人源化纳米抗体的结构表征:潜在的毒素保护抗原表位的含义。

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Previously, the 126-kDa CyaA-hemolysin (CyaA-Hly) fragment cloned from Bordetella pertussis —the causative agent of whooping cough—and functionally expressed in Escherichia coli was revealed as a key determinant for CyaA-mediated hemolysis against target erythrocytes. Here, phagemid-transfected E. coli clones producing nanobodies capable of binding to CyaA-Hly were selected from a humanized-camel VH/V H H phage-display library. Subsequently verified for binding activities by indirect ELISA and Western blotting, four CyaA-Hly-specific nanobodies were obtained and designated according to the presence/absence of V H H-hallmark amino acids as V H H2, VH5, VH18 and V H H37. In vitro neutralization assay revealed that all four ~17-kDa His-tagged VH/V H H nanobodies, in particular V H H37, which were over-expressed as inclusions and successfully unfolded-refolded, were able to effectively inhibit CyaA-Hly-mediated hemolysis. Phage-mimotope searching revealed that only peptides with sequence homologous to Linker 1 connecting Blocks I and II within the CyaA-RTX subdomain were able to bind to these four CyaA-Hly-specific nanobodies. Structural analysis of V H H37 via homology modeling and intermolecular docking confirmed that this humanized nanobody directly interacts with CyaA-RTX/Linker 1 through multiple hydrogen and ionic bonds. Altogether, our present data demonstrate that CyaA-RTX/Linker 1 could serve as a potential epitope of CyaA-protective antigen that may be useful for development of peptide-based pertussis vaccines. Additionally, such toxin-specific nanobodies have a potential for test-driven development of a ready-to-use therapeutic in passive immunization for mitigation of disease severity.
机译:以前,从百日咳博德特氏菌(百日咳的病原体)克隆并在大肠杆菌中功能表达的126 kDa CyaA-溶血素(CyaA-Hly)片段被揭示为CyaA介导的针对靶红细胞的溶血的关键决定因素。在此,从人源化骆驼VH / V H H噬菌体展示文库中选择噬菌粒转染的大肠杆菌克隆,该克隆产生能够结合CyaA-Hly的纳米抗体。随后通过间接ELISA和Western印迹验证了结合活性,获得了四个CyaA-Hly特异性纳米抗体,并根据V H H-标记氨基酸的存在/不存在将其命名为V H H2,VH5,VH18和V H37。体外中和试验表明,所有四个〜17-kDa His标记的VH / V H H纳米抗体,特别是V H37,均以包涵体形式过度表达并成功地展开-折叠,能够有效抑制CyaA-Hly介导的溶血。噬菌体模拟表位显示,只有具有与连接子1同源的序列的肽才能连接这四个CyaA-Hly特异性纳米抗体,所述连接子1连接CyaA-RTX子域内的模块I和II。通过同源性建模和分子间对接的V H 37的结构分析证实,这种人源化的纳米抗体通过多个氢和离子键与CyaA-RTX / Linker 1直接相互作用。总而言之,我们目前的数据表明,CyaA-RTX /接头1可以作为CyaA保护性抗原的潜在表位,可用于开发基于肽的百日咳疫苗。此外,这种毒素特异性纳米抗体具有潜在的潜力,可用于被动免疫中试验驱动的现成治疗剂的开发,以减轻疾病的严重程度。

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