首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >High-Affinity Human Antibody-Like Antibody Fragment (Single-Chain Variable Fragment) Neutralizing the Lethal Factor (LF) of Bacillus anthracis by Inhibiting Protective Antigen-LF Complex Formation
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High-Affinity Human Antibody-Like Antibody Fragment (Single-Chain Variable Fragment) Neutralizing the Lethal Factor (LF) of Bacillus anthracis by Inhibiting Protective Antigen-LF Complex Formation

机译:高亲和力的人抗体样抗体片段(单链可变片段)通过抑制保护性抗原-LF复合物的形成来中和炭疽芽孢杆菌的致死因子(LF)。

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摘要

The anthrax lethal toxin (LT) consists of two subunits, the protective antigen (PA) and the lethal factor (LF), and is essential for anthrax pathogenesis. Several recombinant antibodies directed against PA and intended for medical use have been obtained, but none against LF, despite the recommendations of anthrax experts. Here we describe an anti-LF single-chain variable fragment (scFv) that originated from an immunized macaque (Macaca fascicularis) and was obtained by phage display. Panning of the library of 1.8 × 108 clones allowed the isolation of 2LF, a high-affinity (equilibrium dissociation constant, 1.02 nM) scFv, which is highly neutralizing in the standardized in vitro assay (50% inhibitory concentration, 1.20 ± 0.06 nM) and in an in vivo assay. The scFv neutralizes anthrax LT by inhibiting the formation of the LF-PA complex. The genes encoding 2LF are very similar to those of human immunoglobulin germ line genes, sharing substantial (84.2%) identity with their most similar, germinally encoded counterparts; this feature favors medical applications. These results, and others formerly published, demonstrate that our approach can generate antibody fragments suitable for prophylaxis and therapeutics.
机译:炭疽致死毒素(LT)由两个亚基组成,即保护性抗原(PA)和致死因子(LF),对于炭疽的发病机理至关重要。尽管有炭疽病专家的建议,但已经获得了几种针对PA的用于医学用途的重组抗体,但没有针对LF的重组抗体。在这里,我们描述了一个抗LF单链可变片段(scFv),该片段起源于免疫猕猴(Macaca fascicularis),并通过噬菌体展示获得。淘选1.8×10 8 克隆文库可分离出2LF,这是一种高亲和力(平衡解离常数,1.02 nM)scFv,在标准体外测定中高度中和(50%抑制浓度(1.20±0.06 nM)和体内试验中。 scFv通过抑制LF-PA复合物的形成来中和炭疽LT。编码2LF的基因与人免疫球蛋白种系的基因非常相似,与它们最相似,由发芽编码的对应物具有实质性(84.2%)的同一性。此功能有利于医疗应用。这些结果以及其他先前发表的结果证明,我们的方法可以产生适用于预防和治疗的抗体片段。

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