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一种能够中和墨西哥蝎子毒素的新型人源重组抗体片段。

A novel human recombinant antibody fragment capable of neutralizing Mexican scorpion toxins.

机构信息

Departamento de Medicina Molecular y Bioprocesos, Instituto de Biotecnología, UNAM, Apartado Postal 510-3, Cuernavaca 62250, Morelos, Mexico.

出版信息

Toxicon. 2013 Dec 15;76:370-6. doi: 10.1016/j.toxicon.2013.09.016. Epub 2013 Sep 22.

Abstract

Using phage display and directed evolution, our group has progressed in the construction of a second family of human single chain variable fragments (scFv) which bind to scorpion toxins dangerous to mammals. It was observed that scFv C1 only bound initially to toxin Cn2, which constitutes 6.8% of whole venom from the scorpion Centruroides noxius Hoffman. Only a few amino acid changes were necessary to extend its recognition to other similar toxins and without affecting the recognition for its primary antigen (Cn2 toxin). One variant of scFv C1 (scFv 202F) was selected after two cycles of directed evolution against Cll1 toxin, the second major toxic component from the venom of the Mexican scorpion Centruroides limpidus limpidus Karsh (0.5% of the whole venom). scFv 202F is also capable of recognizing Cn2 toxin. Despite not having the highest affinity for toxins Cll1 (KD = 25.1 × 10(-9) M) or Cn2 (KD = 8.1 × 10(-9) M), this antibody fragment neutralized one LD50 of each one of these toxins. Additionally, scFv 202F moderately recognized Cll2 toxin which constitutes 1.5% of the venom from C. limpidus. Based on our previous experience, we consider that these results are promising; consequently, we continue working on generating new optimized variants from scFv C1 that could be part of a recombinant scorpion anti-venom from human origin, that might reach the market in the near future.

摘要

利用噬菌体展示和定向进化,我们的团队在构建与对哺乳动物有害的蝎毒素结合的第二个人类单链可变片段(scFv)家族方面取得了进展。观察到 scFv C1 最初仅与构成 Centruroides noxius Hoffman 蝎毒液 6.8%的毒素 Cn2 结合。只需几个氨基酸的变化就可以将其识别范围扩展到其他类似的毒素,而不会影响对其主要抗原(Cn2 毒素)的识别。在针对来自墨西哥蝎 Centruroides limpidus limpidus Karsh 的毒液的第二大有毒成分 Cll1 毒素进行两轮定向进化后,选择了 scFv C1 的一个变体(scFv 202F)(占毒液的 0.5%)。scFv 202F 也能够识别 Cn2 毒素。尽管 scFv 202F 对毒素 Cll1(KD = 25.1×10(-9)M)或 Cn2(KD = 8.1×10(-9)M)的亲和力不是最高,但该抗体片段中和了每种毒素的一个 LD50。此外,scFv 202F 中度识别构成 C. limpidus 毒液 1.5%的 Cll2 毒素。基于我们以前的经验,我们认为这些结果很有希望;因此,我们继续致力于从 scFv C1 生成新的优化变体,这些变体可能成为源自人类的重组蝎抗毒液的一部分,这些变体可能在不久的将来投放市场。

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