Villani Maria Elena, Roggero Piero, Bitti Orsola, Benvenuto Eugenio, Franconi Rosella
ENEA, Ente per le Nuove Tecnologie, l'Energia e l'Ambiente, UTS BIOTEC, Sezione Genetica e Genomica Vegetale, C.R. Casaccia, P.O. Box 2400, I-00100 Roma, Italy.
Plant Mol Biol. 2005 Jun;58(3):305-16. doi: 10.1007/s11103-005-4091-0.
Immunomodulation by the ectopic expression of intracellular antibodies ('intrabodies') has a great potential for interfering with physiological or pathological functions in vivo in a highly specific manner. One of the major obstacles of this technology is the inability of most antibodies to properly fold and function in the reducing environment of the cytoplasm, which prevents the formation of essential disulfide bonds. We wished to assess the intracellular performance of antibodies derived from a semi-synthetic single-chain variable fragment (scFv) phage display library ('F8 library') built on a thermodynamically stable single-framework scaffold. To this purpose, we chose to modulate the infection of a pandemic plant pathogen, the cucumber mosaic virus (CMV). After in vitro 'biopanning' on immobilized virions, two scFvs were biochemically characterized, showing high affinity toward the antigen. They were transiently expressed at high yields as soluble molecules in the cytoplasm of Nicotiana benthamiana plants. Subsequently, they were expressed in the cytoplasm of transgenic tomato plants. Challenge with high viral dose showed that both scFvs were able to elicit a phenotypic effect and led to the identification of a transgenic line fully resistant to infection. In these plants, the scFv binds the virus in the inoculated leaves preventing viral long distance movement. This work represents the first demonstration that the 'F8 library' can be directly screened in vitro to rapidly isolate antigen-specific scFvs that act as effective intrabodies in vivo. These antibodies represent powerful tools to interfere with several intracellular targets, modulating pathogen infectivity and/or cellular metabolism.
通过细胞内抗体(“内抗体”)的异位表达进行免疫调节具有极大潜力,能够以高度特异性的方式干扰体内的生理或病理功能。这项技术的主要障碍之一是大多数抗体无法在细胞质的还原环境中正确折叠并发挥功能,这阻碍了必需二硫键的形成。我们希望评估源自基于热力学稳定单框架支架构建的半合成单链可变片段(scFv)噬菌体展示文库(“F8文库”)的抗体在细胞内的性能。为此,我们选择调节一种大流行性植物病原体黄瓜花叶病毒(CMV)的感染。在固定化病毒粒子上进行体外“生物淘选”后,对两种scFv进行了生化表征,显示出对抗原的高亲和力。它们在本氏烟草植物的细胞质中作为可溶性分子以高产率瞬时表达。随后,它们在转基因番茄植物的细胞质中表达。用高病毒剂量进行挑战表明,两种scFv都能够引发表型效应,并导致鉴定出一个对感染完全抗性的转基因株系。在这些植物中,scFv在接种的叶片中结合病毒,阻止病毒的长距离移动。这项工作首次证明,可以在体外直接筛选“F8文库”,以快速分离在体内作为有效内抗体起作用的抗原特异性scFv。这些抗体是干扰多个细胞内靶点、调节病原体感染性和/或细胞代谢的有力工具。