Structure-guided affinity maturation of a novel human antibody targeting the SARS-CoV-2 nucleocapsid protein

噬菌体展示 突变体 连接器 抗体 严重急性呼吸综合征冠状病毒2型(SARS-CoV-2) 肽库 2019年冠状病毒病(COVID-19) 单克隆抗体 计算生物学 同源建模 化学 分子生物学 肽序列 生物 生物化学 遗传学 医学 基因 传染病(医学专业) 计算机科学 疾病 病理 操作系统
作者
Zhihong Wang,Naijing Hu,Yangyihua Zhou,Ning Shi,Beifen Shen,Longlong Luo,Jie Feng
出处
期刊:Scientific Reports [Springer Nature]
卷期号:12 (1) 被引量:2
标识
DOI:10.1038/s41598-022-12242-0
摘要

Abstract The continuous mutation of SARS-CoV-2 has presented enormous challenges to global pandemic prevention and control. Recent studies have shown evidence that the genome sequence of SARS-CoV-2 nucleocapsid proteins is relatively conserved, and their biological functions are being confirmed. There is increasing evidence that the N protein will not only provide a specific diagnostic marker but also become an effective treatment target. In this study, 2G4, which specifically recognizes the N protein, was identified by screening a human phage display library. Based on the computer-guided homology modelling and molecular docking method used, the 3-D structures for the 2G4 scFv fragment (VH-linker-VL structure, with (G 4 S) 3 as the linker peptide in the model), SARS-CoV-2 N protein and its complex were modelled and optimized with a suitable force field. The binding mode and key residues of the 2G4 and N protein interaction were predicted, and three mutant antibodies (named 2G4-M1, 2G4-M2 and 2G4-M3) with higher affinity were designed theoretically. Using directed point mutant technology, the three mutant antibodies were prepared, and their affinity was tested. Their affinity constants of approximately 0.19 nM (2G4-M1), 0.019 nM (2G4-M2) and 0.075 nM (2G4-M3) were at least one order of magnitude lower than that of the parent antibody (3 nM; 2G4, parent antibody), as determined using a biolayer interferometry (BLI) assay. It is expected that high-affinity candidates will be used for diagnosis and even as potential therapeutic drugs for the SARS-CoV-2 pandemic.
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