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Preferential Identification of Agonistic OX40 Antibodies by Using Cell Lysate to Pan Natively Paired Humanized Mouse-Derived Yeast Surface Display Libraries

机译:通过使用细胞裂解液淘选天然配对的人源化的小鼠衍生酵母表面展示文库来鉴定OX40抗体

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摘要

To discover therapeutically relevant antibody candidates, many groups use mouse immunization followed by hybridoma generation or B cell screening. One modern approach is to screen B cells by generating natively paired single chain variable fragment (scFv) display libraries in yeast. Such methods typically rely on soluble antigens for scFv library screening. However, many therapeutically relevant cell-surface targets are difficult to express in a soluble protein format, complicating discovery. In this study, we developed methods to screen humanized mouse-derived yeast scFv libraries using recombinant OX40 protein in cell lysate. We used deep sequencing to compare screening with cell lysate to screening with soluble OX40 protein, in the context of mouse immunizations using either soluble OX40 or OX40-expressing cells and OX40-encoding DNA vector. We found that all tested methods produce a unique diversity of scFv binders. However, when we reformatted forty-one of these scFv as full-length monoclonal antibodies (mAbs), we observed that mAbs identified using soluble antigen immunization with cell lysate sorting always bound cell surface OX40, whereas other methods had significant false positive rates. Antibodies identified using soluble antigen immunization and cell lysate sorting were also significantly more likely to activate OX40 in a cellular assay. Our data suggest that sorting with OX40 protein in cell lysate is more likely than other methods to retain the epitopes required for antibody-mediated OX40 agonism.
机译:为了发现与治疗相关的候选抗体,许多研究小组都使用了小鼠免疫方法,随后进行了杂交瘤的产生或B细胞筛选。一种现代方法是通过在酵母中生成天然配对的单链可变片段(scFv)显示文库来筛选B细胞。此类方法通常依靠可溶性抗原进行scFv文库筛选。但是,许多与治疗有关的细胞表面靶标很难以可溶性蛋白形式表达,这使发现变得复杂。在这项研究中,我们开发了使用细胞裂解物中的重组OX40蛋白筛选人源化小鼠衍生酵母scFv文库的方法。在使用可溶性OX40或OX40表达细胞和OX40编码DNA载体进行小鼠免疫的情况下,我们使用深度测序将细胞裂解液的筛选与可溶性OX40蛋白的筛选进行比较。我们发现,所有测试方法都能产生独特的scFv结合物。但是,当我们将其中的41个scFv重新格式化为全长单克隆抗体(mAbs)时,我们观察到使用可溶性抗原免疫和细胞裂解物分选鉴定出的mAb总是与细胞表面OX40结合,而其他方法的假阳性率却很高。使用可溶性抗原免疫和细胞裂解物分选鉴定出的抗体在细胞分析中也更有可能激活OX40。我们的数据表明,与其他方法相比,在细胞裂解物中用OX40蛋白进行分选更有可能保留抗体介导的OX40激动所需的表位。

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