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单链Fv的抗原识别与靶向递送

Antigen recognition and targeted delivery by the single-chain Fv.

作者信息

Huston J S, Tai M S, McCartney J, Keck P, Oppermann H

机构信息

Creative BioMolecules, Inc., Hopkinton, MA 01748.

出版信息

Cell Biophys. 1993 Jan-Jun;22(1-3):189-224. doi: 10.1007/BF03033874.

Abstract

The single-chain Fv (sFv) has proven attractive for immuno-targeting, both alone and as a targeting element within sFv fusion proteins. This chapter summarizes the features of sFv proteins that have sparked this interest, starting with the conservation of Fv architecture that makes general sFv design practical. The length and composition of linkers used to bridge V domains are discussed based on the sFv literature; special emphasis is given to the (Gly4Ser)3 15-residue linker that has proven of broad utility for constructing Fv regions of antibodies and other members of the immunoglobulin superfamily. The refolding properties of sFv proteins are summarized and examples given from our laboratory. Spontaneous refolding from the fully reduced and denatured state, typified by 26-10 sFv, is contrasted with disulfide-restricted refolding, exemplified by MOPC 315 and R11D10 sFv proteins, which recover antigen binding only if their disulfides have been oxidized prior to removal of denaturant. The medical value of sFv proteins hinges on their reliability in antigen recognition and rapidity in targeted delivery. Detailed analysis of specificity and affinity of antigen binding by the 26-10 antidigoxin sFv has demonstrated very high fidelity to the binding properties of the parent 26-10 sFv. These results gave confidence to the pursuit of more complex biomedical applications of these proteins, which is indicated by our work with the R11D10 sFv for the imaging of myocardial infarctions. Diagnostic imaging and therapeutic immunotargeting by sFv present significant opportunities, particularly as a result of their pharmacokinetic properties. Intravenously administered sFv offers much faster clearance than conventional Fab fragments or intact immunoglobulin with minimal background binding.

摘要

单链Fv(sFv)已被证明在免疫靶向方面具有吸引力,无论是单独使用还是作为sFv融合蛋白中的靶向元件。本章总结了引发这种兴趣的sFv蛋白的特征,首先介绍了使通用sFv设计切实可行的Fv结构的保守性。基于sFv文献讨论了用于连接V结构域的接头的长度和组成;特别强调了(Gly4Ser)3 15个残基的接头,该接头已被证明在构建抗体的Fv区域和免疫球蛋白超家族的其他成员方面具有广泛的用途。总结了sFv蛋白的重折叠特性,并给出了我们实验室的实例。以26-10 sFv为代表的从完全还原和变性状态的自发重折叠与以MOPC 315和R11D10 sFv蛋白为代表的二硫键限制重折叠形成对比,后者只有在去除变性剂之前其二硫键被氧化时才能恢复抗原结合。sFv蛋白的医学价值取决于其在抗原识别中的可靠性和靶向递送的快速性。对26-10抗地高辛sFv抗原结合特异性和亲和力的详细分析表明,其对亲本26-10 sFv的结合特性具有非常高的保真度。这些结果为追求这些蛋白更复杂的生物医学应用提供了信心,我们用R11D10 sFv对心肌梗死进行成像的工作就表明了这一点。sFv用于诊断成像和治疗性免疫靶向具有重大机遇,特别是由于其药代动力学特性。静脉注射的sFv比传统的Fab片段或完整免疫球蛋白清除速度快得多,且背景结合最小。

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