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一种用于噬菌体展示文库的群体重排和哺乳动物表达的高通量平台,以实现全长IgG的功能筛选。

A high-throughput platform for population reformatting and mammalian expression of phage display libraries to enable functional screening as full-length IgG.

作者信息

Xiao Xiaodong, Douthwaite Julie A, Chen Yan, Kemp Ben, Kidd Sara, Percival-Alwyn Jennifer, Smith Alison, Goode Kate, Swerdlow Bonnie, Lowe David, Wu Herren, Dall'Acqua William F, Chowdhury Partha S

机构信息

a Department of Antibody Discovery and Protein Engineering , Gaithersburg , MD , USA.

b Department of Antibody Discovery and Protein Engineering , Cambridge , UK.

出版信息

MAbs. 2017 Aug/Sep;9(6):996-1006. doi: 10.1080/19420862.2017.1337617. Epub 2017 Jun 14.

Abstract

Phage display antibody libraries are a rich resource for discovery of potential therapeutic antibodies. Single-chain variable fragment (scFv) libraries are the most common format due to the efficient display of scFv by phage particles and the ease by which soluble scFv antibodies can be expressed for high-throughput screening. Typically, a cascade of screening and triaging activities are performed, beginning with the assessment of large numbers of E. coli-expressed scFv, and progressing through additional assays with individual reformatting of the most promising scFv to full-length IgG. However, use of high-throughput screening of scFv for the discovery of full-length IgG is not ideal because of the differences between these molecules. Furthermore, the reformatting step represents a bottle neck in the process because each antibody has to be handled individually to preserve the unique VH and VL pairing. These problems could be resolved if populations of scFv could be reformatted to full-length IgG before screening without disrupting the variable region pairing. Here, we describe a novel strategy that allows the reformatting of diverse populations of scFv from phage selections to full-length IgG in a batch format. The reformatting process maintains the diversity and variable region pairing with high fidelity, and the resulted IgG pool enables high-throughput expression of IgG in mammalian cells and cell-based functional screening. The improved process led to the discovery of potent candidates that are comparable or better than those obtained by traditional methods. This strategy should also be readily applicable to Fab-based phage libraries. Our approach, Screening in Product Format (SiPF), represents a substantial improvement in the field of antibody discovery using phage display.

摘要

噬菌体展示抗体文库是发现潜在治疗性抗体的丰富资源。单链可变片段(scFv)文库是最常见的形式,因为噬菌体颗粒能够高效展示scFv,并且可溶性scFv抗体易于表达,便于进行高通量筛选。通常,会进行一系列的筛选和分类活动,首先评估大量在大肠杆菌中表达的scFv,然后对最有前景的scFv进行单独重新格式化,进一步进行其他检测,直至得到全长IgG。然而,使用scFv进行高通量筛选以发现全长IgG并不理想,因为这些分子之间存在差异。此外,重新格式化步骤是该过程的瓶颈,因为每个抗体都必须单独处理以保留独特的VH和VL配对。如果在筛选前能够将scFv群体重新格式化成为全长IgG,同时又不破坏可变区配对,那么这些问题就可以得到解决。在此,我们描述了一种新颖的策略,该策略能够以批量形式将来自噬菌体筛选的各种scFv群体重新格式化成为全长IgG。重新格式化过程能够高度保真地维持多样性和可变区配对,并且所得到的IgG库能够在哺乳动物细胞中实现IgG的高通量表达以及基于细胞的功能筛选。改进后的过程促成了强效候选抗体的发现,这些候选抗体与传统方法获得的抗体相当或更优。该策略应该也很容易应用于基于Fab的噬菌体文库。我们的方法,即产品形式筛选(SiPF),代表了噬菌体展示抗体发现领域的重大进步。

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