Lee Nam Ju, Jung Mooyoung, Yang Hye Young, Shim Hyunbo
Department of Bioinspired Sciences, Ewha Womans University, Seoul, Korea.
Department of Life Sciences, Ewha Womans University, Seoul, Korea.
Sci Rep. 2024 Jul 31;14(1):17747. doi: 10.1038/s41598-024-68680-5.
Using conventional immunoglobulin G (IgG) molecules as therapeutic agents presents several well-known disadvantages owing to their large size and structural complexity, negatively impacting development and production efficiency. Single-domain antibodies (sdAbs) are the smallest functional antibody format (~ 15 kDa) and represent a viable alternative to IgG in many applications. However, unlike natural single-domain antibodies, such as camelid VH, the variable domains of conventional antibodies show poor physicochemical properties when expressed as sdAbs. This report identified stable sdAb variants of human VH3-23 from a framework region 2-randomized human VH library by phage display selection under thermal challenge. Synthetic complementarity determining region diversity was introduced to one of the selected variants with high thermal stability, expression level, and monomeric content to construct a human VH sdAb library. The library was validated by panning against a panel of antigens, and target-specific binders were identified and characterized for their affinity and biophysical properties. The results of this study suggest that a synthetic sdAb library based on a stability-engineered human VH scaffold could be a facile source of high-quality sdAb for many practical applications.
使用传统免疫球蛋白G(IgG)分子作为治疗剂存在一些众所周知的缺点,因为它们尺寸大且结构复杂,对开发和生产效率产生负面影响。单域抗体(sdAbs)是最小的功能性抗体形式(约15 kDa),在许多应用中是IgG的可行替代物。然而,与天然单域抗体(如骆驼科动物VH)不同,传统抗体的可变结构域在作为sdAbs表达时表现出较差的物理化学性质。本报告通过噬菌体展示筛选在热挑战下从框架区2随机化的人VH文库中鉴定了人VH3-23的稳定sdAb变体。将合成互补决定区多样性引入到具有高热稳定性、表达水平和单体含量的一个选定变体中,以构建人VH sdAb文库。通过针对一组抗原进行淘选来验证该文库,并鉴定了靶标特异性结合物并对其亲和力和生物物理性质进行了表征。本研究结果表明,基于稳定性工程化人VH支架的合成sdAb文库可能是许多实际应用中高质量sdAb的便捷来源。