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优化自主重链可变结构域的系统工程。

Systematic Engineering of Optimized Autonomous Heavy-Chain Variable Domains.

机构信息

Banting and Best Department of Medical Research and Department of Molecular Genetics, The Donnelly Centre, University of Toronto, Toronto, Ontario M5S 3E1, Canada.

Program in Molecular Medicine, The Hospital for Sick Children Research Institute and Departments of Biochemistry and Immunology, University of Toronto, Toronto, Ontario, Canada.

出版信息

J Mol Biol. 2021 Oct 15;433(21):167241. doi: 10.1016/j.jmb.2021.167241. Epub 2021 Sep 9.

Abstract

Autonomous heavy-chain variable (V) domains are the smallest functional antibody fragments, and they possess unique features, including small size and convex paratopes, which provide enhanced targeting of concave epitopes that are difficult to access with larger conventional antibodies. However, human V domains have evolved to fold and function with a light chain partner, and alone, they typically suffer from low stability and high aggregation propensity. Development of autonomous human V domains, in which aggregation propensity is reduced without compromising antigen recognition, has proven challenging. Here, we used an autonomous human V domain as a scaffold to construct phage-displayed synthetic libraries in which aspartate was systematically incorporated at different paratope positions. In selections, the library yielded many anti-EphA1 receptor V domains, which were characterized in detail. Structural analyses of a parental anti-EphA1 V domain and an improved variant provided insights into the effects of aspartate and other substitutions on preventing aggregation while retaining function. Our naïve libraries and in vitro selection procedures offer a systematic approach to generating highly functional autonomous human V domains that resist aggregation and could be used for basic research and biomedical applications.

摘要

自主重链可变 (V) 结构域是最小的功能性抗体片段,具有独特的特性,包括体积小和凸面变区,这提供了增强对难以用较大常规抗体靶向的凹面表位的靶向能力。然而,人类 V 结构域已经进化为与轻链伴侣折叠和发挥功能,而单独使用时,它们通常稳定性低,易于聚集。开发具有自主功能的人类 V 结构域,在不影响抗原识别的情况下降低聚集倾向,已被证明具有挑战性。在这里,我们使用自主人 V 结构域作为支架,构建了在不同变区位置系统掺入天冬氨酸的噬菌体展示合成文库。在选择过程中,该文库产生了许多抗 EphA1 受体 V 结构域,并对其进行了详细表征。对亲本抗 EphA1 V 结构域和改进变体的结构分析提供了关于天冬氨酸和其他取代对阻止聚集同时保留功能的影响的见解。我们的天然文库和体外选择程序提供了一种系统的方法来产生高度功能的自主人 V 结构域,这些结构域能够抵抗聚集,可用于基础研究和生物医学应用。

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