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首页> 外文期刊>Clinical and vaccine immunology: CVI >High-Resolution Epitope Positioning of a Large Collection of Neutralizing and Nonneutralizing Single-Domain Antibodies on the Enzymatic and Binding Subunits of Ricin Toxin
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High-Resolution Epitope Positioning of a Large Collection of Neutralizing and Nonneutralizing Single-Domain Antibodies on the Enzymatic and Binding Subunits of Ricin Toxin

机译:蓖麻毒素的酶和结合亚基上的大量中和和非中和单域抗体的高分辨率抗原决定簇位置。

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We previously produced a heavy-chain-only antibody (Ab) VH domain (VHH)-displayed phage library from two alpacas that had been immunized with ricin toxoid and nontoxic mixtures of the enzymatic ricin toxin A subunit (RTA) and binding ricin toxin B subunit (RTB) (D. J. Vance, J. M. Tremblay, N. J. Mantis, and C. B. Shoemaker, J Biol Chem 288:36538–36547, 2013, https://doi.org/10.1074/jbc.M113.519207). Initial and subsequent screens of that library by direct enzyme-linked immunosorbent assay (ELISA) yielded more than two dozen unique RTA- and RTB-specific VHHs, including 10 whose structures were subsequently solved in complex with RTA. To generate a more complete antigenic map of ricin toxin and to define the epitopes associated with toxin-neutralizing activity, we subjected the VHH-displayed phage library to additional “pannings” on both receptor-bound ricin and antibody-captured ricin. We now report the full-length DNA sequences, binding affinities, and neutralizing activities of 68 unique VHHs: 31 against RTA, 33 against RTB, and 4 against ricin holotoxin. Epitope positioning was achieved through cross-competition ELISAs performed with a panel of monoclonal antibodies (MAbs) and verified, in some instances, with hydrogen-deuterium exchange mass spectrometry. The 68 VHHs grouped into more than 20 different competition bins. The RTA-specific VHHs with strong toxin-neutralizing activities were confined to bins that overlapped two previously identified neutralizing hot spots, termed clusters I and II. The four RTB-specific VHHs with potent toxin-neutralizing activity grouped within three adjacent bins situated at the RTA-RTB interface near cluster II. These results provide important insights into epitope interrelationships on the surface of ricin and delineate regions of vulnerability that can be exploited for the purpose of vaccine and therapeutic development.
机译:我们以前从两个羊驼中制备了仅重链抗体(Ab)VH结构域(VHH)展示的噬菌体文库,这些羊驼已经用蓖麻毒素类毒素和无毒的蓖麻毒素B亚基(RTA)和结合蓖麻毒素B的无毒混合物进行了免疫亚基(RTB)(DJ Vance,JM Tremblay,NJ Mantis和CB Shoemaker,J Biol Chem 288:36538–36547,2013,https://doi.org/10.1074/jbc.M113.519207)。通过直接酶联免疫吸附测定(ELISA)对该库进行的初始和后续筛选产生了超过十二种独特的RTA特异性和RTB特异性VHH,其中包括10种其结构随后与RTA复溶。为了生成蓖麻毒素毒素的更完整抗原图谱并定义与毒素中和活性相关的表位,我们对VHH展示的噬菌体文库进行了受体结合蓖麻毒素和抗体捕获的蓖麻毒素的其他“淘选”。现在,我们报告68个独特VHH的全长DNA序列,结合亲和力和中和活性:针对RTA的31个,针对RTB的33个和针对蓖麻毒素全毒素的4个。通过使用一组单克隆抗体(MAb)进行交叉竞争ELISA来实现表位定位,并在某些情况下通过氢-氘交换质谱法进行了验证。 68个VHH分为20多个不同的比赛区。具有强大的毒素中和活性的RTA特异性VHH被限制在与两个先前确定的中和热点(称为簇I和II)重叠的容器中。具有强大的毒素中和活性的四个RTB特异性VHHs位于簇II附近RTA-RTB界面处的三个相邻箱中。这些结果为蓖麻毒蛋白表面上的表位相互关系提供了重要的见解,并描绘了可用于疫苗和治疗开发目的的易损区域。

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