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A Combinatory Antibody–Antigen Microarray Assay for High-Content Screening of Single-Chain Fragment Variable Clones from Recombinant Libraries

机译:重组抗体-抗原微阵列检测从重组文库中单链片段可变克隆的高内涵筛选

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摘要

We have developed a combinatory antibody–antigen microarray for direct screening of multiple single-chain fragment variable (scFv) clones with no need for pre-purification or enrichment before screening. The straightforward workflow allows for early selection of binders to predefined peptide and glycopeptide targets. A capture antibody is contact printed on microarray slides, side by side with the antigens of interest. A large number of scFv clones, in supernatants, are printed on top of the capture antibody and the antigen in a “spot-on-spot” print. The printed scFv clones, which bind to the capture antibody, are detected using biotinylated antigen, while the binding of scFv clones to the printed antigen is detected through a mouse anti-tag antibody. Two different analyses are thus performed on the same slide, generating two kinds of information: one on the ability of an individual scFv clone to bind to the soluble form of the antigen, which may favour selection for higher affinity rather than avidity, while the other allows the identification of large numbers of clones, simultaneously, due to the binding of scFv clones to densely presented antigens, thus providing an overall increased hit rate. The functionality of the new screening approach was illustrated through the generation of antibodies against peptides from the chaperone complex Ku70/Ku80 and the GalNAcα-serine/threonine epitope on the IgA1 alpha chain hinge region. In total, 659 scFv clones were screened with a hit rate of approximately 20%. This approach allowed the identification of functional antibodies in both cases, illustrating the usefulness and capacity of this combinatory microarray screening technique for efficient analysis and validation of antibodies at an early stage of antibody generation.
机译:我们已经开发了一种组合抗体-抗原微阵列,可以直接筛选多个单链片段可变(scFv)克隆,而无需在筛选前进行预纯化或富集。简单的工作流程允许及早选择与预定义的肽和糖肽靶标结合的结合物。将捕获抗体与感兴趣的抗原并排印刷在微阵列载玻片上。上清液中的大量scFv克隆以“点对点”的形式印在捕获抗体和抗原的顶部。使用生物素化的抗原检测与捕获抗体结合的印刷scFv克隆,而通过小鼠抗标签抗体检测scFv克隆与印刷抗原的结合。因此,在同一张幻灯片上进行了两种不同的分析,从而产生两种信息:一种关于单个scFv克隆结合抗原的可溶性形式的能力,这可能有助于选择更高的亲和力而不是亲和力,而另一种由于scFv克隆与致密呈递的抗原结合,因此可同时鉴定大量克隆,从而提供了总体提高的命中率。通过从伴侣复合物Ku70 / Ku80和IgA1α链铰链区的GalNAcα-丝氨酸/苏氨酸表位生成针对肽的抗体,说明了新筛选方法的功能。总共筛选了659个scFv克隆,命中率约为20%。这种方法可以在两种情况下鉴定功能性抗体,从而说明了这种组合微阵列筛选技术在抗体生成的早期阶段对抗体进行有效分析和验证的有用性和能力。

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