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One-step zero-background IgG reformatting of phage-displayed antibody fragments enabling rapid and high-throughput lead identification

机译:噬菌体展示抗体片段的一步零背景IgG重新格式化可快速高通量鉴定铅

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摘要

We describe a novel cloning method, referred to as insert-tagged (InTag) positive selection, for the rapid one-step reformatting of phage-displayed antibody fragments to full-length immunoglobulin Gs (IgGs). InTag positive selection enables recombinant clones of interest to be directly selected without cloning background, bypassing the laborious process of plating out cultures and colony screening and enabling the cloning procedure to be automated and performed in a high-throughput format. This removes a significant bottleneck in the functional screening of phage-derived antibody candidates and enables a large number of clones to be directly reformatted into IgG without the intermediate step of Escherichia coli expression and testing of soluble antibody fragments. The use of InTag positive selection with the Dyax Fab-on-phage antibody library is demonstrated, and optimized methods for the small-scale transient expression of IgGs at high levels are described. InTag positive selection cloning has the potential for wide application in high-throughput DNA cloning involving multiple inserts, markedly improving the speed and quality of selections from protein libraries.
机译:我们描述了一种新颖的克隆方法,称为插入标记(InTag)阳性选择,用于将噬菌体展示的抗体片段快速一步重新格式化为全长免疫球蛋白Gs(IgGs)。 InTag阳性选择可直接选择感兴趣的重组克隆而无需克隆背景,从而绕开了繁琐的培养培养和菌落筛选过程,并使克隆过程实现了自动化并以高通量形式进行。这消除了噬菌体衍生抗体候选物的功能筛选中的重大瓶颈,并使大量克隆直接重新格式化为IgG,而无需进行大肠杆菌表达和测试可溶性抗体片段的中间步骤。证明了使用Dyax噬菌体Fab抗体文库进行InTag阳性选择,并描述了用于以高水平小规模瞬时表达IgG的优化方法。 InTag阳性选择克隆在涉及多个插入片段的高通量DNA克隆中具有广泛应用的潜力,从而显着提高了从蛋白质文库中进行选择的速度和质量。

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