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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Generation and screening of efficient neutralizing single domain antibodies (VHHs) against the critical functional domain of anthrax protective antigen (PA)
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Generation and screening of efficient neutralizing single domain antibodies (VHHs) against the critical functional domain of anthrax protective antigen (PA)

机译:对炭疽保护抗原临界功能结构域的高效中和单结构域抗体(VHHS)的产生和筛选(PA)

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摘要

Since anthrax is an acute infectious disease, detection and neutralization of the toxins of pathogenic Bacillus anthracis are of great importance. The critical role of protective antigen (PA) component of tripartite anthrax toxin in toxin entry into the host cell cytosol provided a great deal of effort to generate monoclonal antibodies against this constitute. Regarding the importance of anthrax detection/neutralization and unique physicochemical and pharmacological features of VHHs as single domain antibodies, the present study aimed to generate VHHs against the receptor binding domain of PA, termed PAD4. After camel immunization, a gene repertoire of VHH fragments with a diversity of 4.7 x 108 clones was produced, followed by constructing a VHH phage display library. A stringent successive biopanning was then carried out to isolate the phages displaying high affinity VHHs against PAD4.Polyclonal and monoclonal Enzyme-linked immunosorbent assay (ELISA) verified binding specificity of phages to the target protein. Modeling of VHHs together with the docking simulation studies, illustrated the binding site of antibodies on antigen. Docking analysis revealed that all selected VHHs potently cover the key functional residues of PAD4. Since the selected VHHs could cover and block the receptor binding loops of PA, they could be proposed as hopeful anti-Anthrax candidates. (C) 2018 Elsevier B.V. All rights reserved.
机译:由于炭疽是一种急性传染病,因此致病性芽孢杆菌的毒素的检测和中和是非常重要的。在毒素进入宿主细胞中,三方炭疽毒素的保护性抗原(PA)组分的关键作用提供了大量努力,产生针对这种构成的单克隆抗体。关于炭疽检测/中和和VHHS作为单结构域抗体的独特物理化学和药理特征的重要性,本研究旨在将VHHS用于PA的受体结合结构域,称为PAD4。在骆驼免疫之后,产生具有4.7×108克隆的多样性的VHH片段的基因曲目,然后构建VHH噬菌体显示器文库。然后进行严格的连续生物淘选,以将显示高亲和力VHHS的噬菌体与PAD4分离。聚合物和单克隆酶联免疫吸附测定(ELISA)验证了噬菌体的结合特异性对靶蛋白。 VHHS与对接模拟研究的建模,说明了抗原抗体的结合位点。对接分析显示,所有选定的VHHs都效果覆盖了PAD4的关键功能残留物。由于所选的VHHS可以覆盖并阻止PA的受体结合环,因此可以提出作为希望的抗炭疽候选者。 (c)2018年elestvier b.v.保留所有权利。

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