Sádio Flávio, Stadlmayr Gerhard, Stadlbauer Katharina, Rüker Florian, Wozniak-Knopp Gordana
Christian Doppler Laboratory for Innovative Immunotherapeutics, Department of Biotechnology, University of Natural Resources and Life Sciences (BOKU), Vienna, Austria.
Methods Mol Biol. 2019;1923:287-308. doi: 10.1007/978-1-4939-9024-5_13.
Since the introduction of the yeast display platform, this method has increasingly gained popularity for the discovery and affinity maturation of antibodies and other protein scaffolds intended for antigen recognition. Yeast display is particularly well suited for the selection of antigen-binding Fc fragments (Fcabs) as it allows rapid combinatorial library construction via gap repair-driven homologous recombination and an efficient display of a glycosylated Fc able to interact with Fcγ receptors. Apart from expression-related normalization, isolation of properly folded Fcabs can be guided efficiently by simultaneous staining with ligands such as protein A, FcγRI, or the conformation-sensitive anti-FigC2 antibody, whose binding is critically dependent on the integrity of the Fc structure. The particular properties of the Fcab scaffold, such as its homodimeric state which can promote binding to multiple antigen molecules, require modifications of traditional affinity maturation strategies. Preferred to equilibrium selections are kinetically driven antigen selections, designed to specifically influence the binding off-rate, which in many cases augments the desired biological effect. A simple design of a yeast-displayed heterodimeric Fc fragment is described and can be used as a general guideline for affinity selection of Fcabs with an asymmetric binding site. Overall, this chapter underlines the importance of the versatile yeast display technique for the optimization of the novel Fcab scaffold for antigen recognition.
自酵母展示平台引入以来,这种方法在用于抗原识别的抗体和其他蛋白质支架的发现及亲和力成熟方面越来越受欢迎。酵母展示特别适合于抗原结合Fc片段(Fcabs)的筛选,因为它允许通过缺口修复驱动的同源重组快速构建组合文库,并能有效展示能够与Fcγ受体相互作用的糖基化Fc。除了与表达相关的标准化之外,通过用诸如蛋白A、FcγRI或构象敏感的抗FigC2抗体等配体同时染色,可以有效地指导正确折叠的Fcabs的分离,其结合关键取决于Fc结构的完整性。Fcabs支架的特殊性质,例如其同二聚体状态可促进与多个抗原分子的结合,这需要对传统的亲和力成熟策略进行修改。动力学驱动的抗原选择优于平衡选择,其设计目的是特异性影响结合解离速率,在许多情况下可增强所需的生物学效应。本文描述了一种酵母展示的异二聚体Fc片段的简单设计,可作为具有不对称结合位点的Fcabs亲和力选择的一般指导原则。总体而言,本章强调了通用的酵母展示技术对于优化用于抗原识别的新型Fcabs支架的重要性。