Characterization of a high‐affinity human antibody with a disulfide bridge in the third complementarity‐determining region of the heavy chain

互补决定区 抗体 噬菌体展示 抗原 免疫球蛋白轻链 化学 半胱氨酸 肽库 单克隆抗体 表位 平移(音频) 亲和力成熟 分子生物学 肽序列 生物化学 生物 基因 遗传学 古生物学 缩放 镜头(地质)
作者
Juan C. Almagro,G. Raghunathan,E. Beil,Dariusz J. Janecki,Qiang Chen,Thai Dinh,Ann LaCombe,Judy Connor,Mark Ware,Paul H. Kim,Ronald V. Swanson,Johan Fransson
出处
期刊:Journal of Molecular Recognition [Wiley]
卷期号:25 (3): 125-135 被引量:36
标识
DOI:10.1002/jmr.1168
摘要

Disulfide bridges are common in the antigen-binding site from sharks (new antigen receptor) and camels (single variable heavy-chain domain, VHH), in which they confer both structural diversity and domain stability. In human antibodies, cysteine residues in the third complementarity-determining region of the heavy chain (CDR-H3) are rare but naturally encoded in the IGHD germline genes. Here, by panning a phage display library designed based on human germline genes and synthetic CDR-H3 regions against a human cytokine, we identified an antibody (M3) containing two cysteine residues in the CDR-H3. It binds the cytokine with high affinity (0.4 nM), recognizes a unique epitope on the antigen, and has a distinct neutralization profile as compared with all other antibodies selected from the library. The two cysteine residues form a disulfide bridge as determined by mass spectrometric peptide mapping. Replacing the cysteines with alanines did not change the solubility and stability of the monoclonal antibody, but binding to the antigen was significantly impaired. Three-dimensional modeling and dynamic simulations were employed to explore how the disulfide bridge influences the conformation of CDR-H3 and binding to the antigen. On the basis of these results, we envision that designing human combinatorial antibody libraries to contain intra-CDR or inter-CDR disulfide bridges could lead to identification of human antibodies with unique binding profiles.
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