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Libraries Against Libraries For Combinatorial Selection Of Replicating Antigen-antibody Pairs

机译:图书馆针对复制抗原-抗体对复制组合的选择

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摘要

Antibodies are among the most highly selective tight-binding ligands for proteins. Because the human genome project has deciphered the proteome, there is an opportunity to use combinatorial antibody libraries to select high-affinity antibodies to every protein encoded by the genome. However, this is a large task because the selection formats used today for combinatorial antibody libraries are geared toward generating antibodies to one antigen at a time. Here, we describe a method that accelerates the identification of antibodies to a multitude of antigens simultaneously by matching combinatorial antibody libraries against eu-karyotic antigen libraries so that replication-competent cognate antigen-antibody pairs can be directly selected. Phage and yeast display systems are used because they each link genotype to phenotype and can be replicated individually. When combined with cell sorting, the two libraries can be selected against each other for recovery of cognate antigen-antibody clones in a single experiment.
机译:抗体是蛋白质选择性最强的紧密结合配体之一。由于人类基因组计划已经破译了蛋白质组,因此有机会使用组合抗体库选择针对基因组编码的每种蛋白质的高亲和力抗体。然而,这是一项艰巨的任务,因为当今用于组合抗体库的选择格式旨在一次生成针对一种抗原的抗体。在这里,我们描述了一种方法,该方法通过匹配针对真核生物抗原库的组合抗体库来加速同时鉴定多种抗原的抗体,从而可以直接选择具有复制能力的同源抗原-抗体对。使用噬菌体和酵母展示系统是因为它们各自将基因型连接到表型,并且可以单独复制。当与细胞分选结合时,可以在两个实验中相互选择两个文库以回收同源抗原-抗体克隆。

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