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Effective Optimization of Antibody Affinity by Phage Display Integrated with High-Throughput DNA Synthesis and Sequencing Technologies

机译:通过噬菌体展示结合高通量DNA合成和测序技术有效优化抗体亲和力

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摘要

Phage display technology has been widely used for antibody affinity maturation for decades. The limited library sequence diversity together with excessive redundancy and labour-consuming procedure for candidate identification are two major obstacles to widespread adoption of this technology. We hereby describe a novel library generation and screening approach to address the problems. The approach started with the targeted diversification of multiple complementarity determining regions (CDRs) of a humanized anti-ErbB2 antibody, HuA21, with a small perturbation mutagenesis strategy. A combination of three degenerate codons, NWG, NWC, and NSG, were chosen for amino acid saturation mutagenesis without introducing cysteine and stop residues. In total, 7,749 degenerate oligonucleotides were synthesized on two microchips and released to construct five single-chain antibody fragment (scFv) gene libraries with 4 x 106 DNA sequences. Deep sequencing of the unselected and selected phage libraries using the Illumina platform allowed for an in-depth evaluation of the enrichment landscapes in CDR sequences and amino acid substitutions. Potent candidates were identified according to their high frequencies using NGS analysis, by-passing the need for the primary screening of target-binding clones. Furthermore, a subsequent library by recombination of the 10 most abundant variants from four CDRs was constructed and screened, and a mutant with 158-fold increased affinity (Kd = 25.5 pM) was obtained. These results suggest the potential application of the developed methodology for optimizing the binding properties of other antibodies and biomolecules.
机译:噬菌体展示技术已广泛用于抗体亲和力成熟数十年。有限的文库序列多样性以及过多的冗余和用于候选人识别的费力程序是该技术广泛采用的两个主要障碍。我们在此描述一种新颖的图书馆生成和筛选方法来解决这些问题。该方法开始于目标化多样化的人源化抗ErbB2抗体HuA21的多个互补决定区(CDR),采用小的扰动诱变策略。选择了三个简并密码子NWG,NWC和NSG的组合进行氨基酸饱和诱变,而不会引入半胱氨酸和终止残基。总共在两个微芯片上合成了7,749个简并寡核苷酸,并释放以构建5个具有4 x 10 6 DNA序列的单链抗体片段(scFv)基因文库。使用Illumina平台对未选择和选择的噬菌体文库进行深度测序,可对CDR序列和氨基酸取代中的富集态势进行深入评估。使用NGS分析根据强效候选者的频率来确定强效候选者,而无需对目标结合克隆进行初步筛选。此外,通过重组和筛选来自四个CDR的10个最丰富的变体来构建随后的文库,并获得了亲和力增加158倍的突变体(Kd = 25.5 pM)。这些结果表明,开发的方法学在优化其他抗体和生物分子的结合特性方面的潜在应用。

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