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在细菌中表达的单链抗体片段可中和蜱传黄病毒。

A single chain antibody fragment expressed in bacteria neutralizes tick-borne flaviviruses.

作者信息

Jiang W, Bonnert T P, Venugopal K, Gould E A

机构信息

NERC Institute of Virology and Environmental Microbiology, Oxford, United Kingdom.

出版信息

Virology. 1994 Apr;200(1):21-8. doi: 10.1006/viro.1994.1158.

Abstract

A recombinant single chain antibody fragment (scFv) that identifies a neutralizing epitope on the envelope glycoprotein of louping iII (LI) and tick-borne encephalitis (TBE) virus has been developed using a bacteriophage expression system. The mRNA was extracted from a cloned hybridoma cell culture that produces a mouse monoclonal antibody (MAb 4.2) known to map to amino acids 308-311 of LI and TBE virus, corresponding to domain B on the proposed two-dimensional model of the tick-borne encephalitis virus envelope protein. The V-genes encoding the antigen-binding site of MAb 4.2 were amplified and cloned for expression as a fusion protein to the pIII coat protein of filamentous phage. Solid phase selection of these phage against the LI virus antigen, was necessary to isolate the correct MAb 4.2 scFv fragment which was subsequently produced in soluble form in bacteria and harvested from the culture supernatant medium. The characteristics of this expressed single chain antibody were compared with MAb 4.2. The expressed antibody portrayed the antigenic specificity of MAb 4.2 and also neutralized the infectivity of louping iII and some other tick-borne flaviviruses. The potential of this technique for studying antigen-antibody interactions and for the development of prophylactic reagents are discussed.

摘要

利用噬菌体表达系统开发出一种重组单链抗体片段(scFv),该片段可识别跳跃病病毒(LI)和蜱传脑炎病毒(TBE)包膜糖蛋白上的一个中和表位。从克隆的杂交瘤细胞培养物中提取mRNA,该培养物产生一种小鼠单克隆抗体(单克隆抗体4.2),已知该抗体定位于LI和TBE病毒的308 - 311位氨基酸,对应于蜱传脑炎病毒包膜蛋白二维模型上的B结构域。编码单克隆抗体4.2抗原结合位点的V基因被扩增并克隆,以融合蛋白形式表达于丝状噬菌体的pIII外壳蛋白上。针对LI病毒抗原对这些噬菌体进行固相筛选,对于分离正确的单克隆抗体4.2 scFv片段是必要的,该片段随后以可溶形式在细菌中产生,并从培养上清培养基中收获。将这种表达的单链抗体的特性与单克隆抗体4.2进行了比较。表达的抗体表现出单克隆抗体4.2的抗原特异性,并且还中和了跳跃病病毒和其他一些蜱传黄病毒的感染性。讨论了该技术在研究抗原 - 抗体相互作用以及开发预防性试剂方面的潜力。

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