The Human Combinatorial Antibody Library HuCAL GOLD Combines Diversification of All Six CDRs According to the Natural Immune System with a Novel Display Method for Efficient Selection of High-Affinity Antibodies

噬菌体展示 互补决定区 抗体库 抗体 计算生物学 肽库 亲和力成熟 副镜 生物 免疫球蛋白轻链 单域抗体 抗原 分子生物学 组合化学 化学 遗传学 表位 肽序列 基因
作者
Christine Rothe,Stefanie Urlinger,Corinna Löhning,Josef Prassler,Yvonne Stark,Ute Jäger,Bernd Hubner,Michael Bardroff,Ingrid Pradel,Melanie Boß,Renate Bittlingmaier,Tschimegma Bataa,Christian Frisch,Bodo Brocks,Annemarie Honegger,Margit Urban
出处
期刊:Journal of Molecular Biology [Elsevier BV]
卷期号:376 (4): 1182-1200 被引量:246
标识
DOI:10.1016/j.jmb.2007.12.018
摘要

This article describes the generation of the Human Combinatorial Antibody Library HuCAL GOLD. HuCAL GOLD is a synthetic human Fab library based on the HuCAL concept with all six complementarity-determining regions (CDRs) diversified according to the sequence and length variability of naturally rearranged human antibodies. The human antibody repertoire was analyzed in-depth, and individual CDR libraries were designed and generated for each CDR and each antibody family. Trinucleotide mixtures were used to synthesize the CDR libraries in order to ensure a high quality within HuCAL GOLD, and a β-lactamase selection system was employed to eliminate frame-shifted clones after successive cloning of the CDR libraries. With these methods, a large, high-quality library with more than 10 billion functional Fab fragments was achieved. By using CysDisplay, the antibody fragments are displayed on the tip of the phage via a disulfide bridge between the phage coat protein pIII and the heavy chain of the antibody fragment. Efficient elution of specific phages is possible by adding reducing agents. HuCAL GOLD was challenged with a variety of different antigens and proved to be a reliable source of high-affinity human antibodies with best affinities in the picomolar range, thus functioning as an excellent source of antibodies for research, diagnostic, and therapeutic applications. Furthermore, the data presented in this article demonstrate that CysDisplay is a robust and broadly applicable display technology even for high-throughput applications.
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