Department of Molecular Genetics, Donnelly Centre, University of Toronto, Toronto, Ontario, Canada.
Protein Sci. 2020 Oct;29(10):2075-2084. doi: 10.1002/pro.3931. Epub 2020 Sep 15.
Phage-displayed synthetic antibody (Ab) repertoires have become a major source of affinity reagents for basic and clinical research. Specific Abs identified from such libraries are often screened as fragments antigen binding (Fabs) produced in bacteria, and those with desired biochemical characteristics are reformatted for production as full-length immunoglobulin G (IgG) in mammalian cells. The conversion of Fabs to IgGs is a cumbersome and often rate-limiting step in the development of Abs. Moreover, biochemical properties required for lead IgG development are not always shared by the Fabs, and these issues are not uncovered until a significant effort has been spent on Abs that ultimately will not be useful. Thus, there is a need for simple and rapid techniques to convert phage-displayed Fabs to IgGs at an early stage of the Ab screening process. We report the generation of a highly diverse phage-displayed synthetic single-chain Fab (scFab) library, in which the light and heavy chains were tethered with an optimized linker. Following selection, pools of scFabs were converted to single-chain IgGs (scIgGs) en masse, enabling facile screening of hundreds of phage-derived scIgGs. We show that this approach can be used to rapidly screen for and select scIgGs that target cell-surface receptors, and scIgGs behave the same as conventional IgGs.
噬菌体展示合成抗体 (Ab) 库已成为基础和临床研究中亲和试剂的主要来源。从这些文库中鉴定出的特异性 Ab 通常作为在细菌中产生的片段抗原结合 (Fab) 进行筛选,并且那些具有所需生化特性的 Ab 被重新构建为在哺乳动物细胞中生产全长免疫球蛋白 G (IgG)。将 Fab 转化为 IgG 是 Ab 开发中的一个繁琐且常常是限速步骤。此外,对于先导 IgG 开发所需的生化特性并不总是与 Fab 共享,并且直到在最终将无用的 Ab 上花费大量精力后,这些问题才会显现出来。因此,需要在 Ab 筛选过程的早期阶段,使用简单快速的技术将噬菌体展示的 Fab 转化为 IgG。我们报告了一种高度多样化的噬菌体展示合成单链 Fab (scFab) 文库的生成,其中轻链和重链通过优化的接头连接。经过选择,scFab 池被大规模转化为单链 IgG (scIgG),从而能够轻松筛选数百种噬菌体衍生的 scIgG。我们表明,这种方法可用于快速筛选和选择靶向细胞表面受体的 scIgG,并且 scIgG 的行为与传统 IgG 相同。