Ouyang Wenhao O, Lv Huibin, Liu Wenkan, Lei Ruipeng, Mou Zongjun, Pholcharee Tossapol, Talmage Logan, Tong Meixuan, Ji Wei, Wang Yiquan, Dailey Katrine E, Gopal Akshita B, Choi Danbi, Ardagh Madison R, Rodriguez Lucia A, Guthmiller Jenna J, Dai Xinghong, Wu Nicholas C
Department of Biochemistry, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Carl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Sci Transl Med. 2025 Sep 3;17(814):eadt4147. doi: 10.1126/scitranslmed.adt4147.
Antibody discovery is crucial for developing therapeutics and vaccines and for understanding adaptive immunity. However, the lack of approaches to synthesize antibodies with defined sequences in a high-throughput manner represents a major bottleneck in antibody discovery. Here, we present oPool display, a high-throughput cell-free platform that combined oligo pool synthesis and mRNA display to rapidly construct and characterize hundreds to thousands of natively paired antibodies in parallel. As a proof of concept, we applied oPool display to probe the binding specificity of more than 300 uncommon influenza hemagglutinin-specific antibodies against nine hemagglutinin variants through 16 screens. More than 5000 binding tests were performed in 3 to 5 days of hands-on time with further scaling potential. Follow-up structural and functional analysis of two antibodies revealed the versatility of the human immunoglobulin gene segment D3-3 () in recognizing the hemagglutinin stem. Overall, this study established an experimental platform that not only accelerates antibody characterization but also enables unbiased discovery of recurring molecular signatures among antibodies with the same specificity.
抗体发现对于开发治疗药物和疫苗以及理解适应性免疫至关重要。然而,缺乏以高通量方式合成具有确定序列抗体的方法是抗体发现中的一个主要瓶颈。在此,我们展示了oPool展示技术,这是一个高通量无细胞平台,它结合了寡核苷酸库合成和mRNA展示技术,能够快速并行构建和表征数百至数千种天然配对的抗体。作为概念验证,我们应用oPool展示技术通过16次筛选来探测300多种罕见的流感血凝素特异性抗体针对九种血凝素变体的结合特异性。在3至5天的实际操作时间内进行了超过5000次结合测试,并且具有进一步扩大规模的潜力。对两种抗体的后续结构和功能分析揭示了人类免疫球蛋白基因片段D3-3()在识别血凝素茎部方面的多功能性。总体而言,本研究建立了一个实验平台,该平台不仅加速了抗体表征,还能够无偏倚地发现具有相同特异性的抗体之间反复出现的分子特征。