Rhiel Laura, Krah Simon, Günther Ralf, Becker Stefan, Kolmar Harald, Hock Björn
Protein Engineering and Antibody Technologies, Merck Serono, Merck KGaA, Darmstadt, Germany.
Institute for Organic Chemistry and Biochemistry, Technische Universität Darmstadt, Darmstadt, Germany.
PLoS One. 2014 Dec 12;9(12):e114887. doi: 10.1371/journal.pone.0114887. eCollection 2014.
We describe a novel approach named REAL-Select for the non-covalent display of IgG-molecules on the surface of yeast cells for the purpose of antibody engineering and selection. It relies on the capture of secreted native full-length antibodies on the cell surface via binding to an externally immobilized ZZ domain, which tightly binds antibody Fc. It is beneficial for high-throughput screening of yeast-displayed IgG-libraries during antibody discovery and development. In a model experiment, antibody-displaying yeast cells were isolated from a 1:1,000,000 mixture with control cells confirming the maintenance of genotype-phenotype linkage. Antibodies with improved binding characteristics were obtained by affinity maturation using REAL-Select, demonstrating the ability of this system to display antibodies in their native form and to detect subtle changes in affinity by flow cytometry. The biotinylation of the cell surface followed by functionalization with a streptavidin-ZZ fusion protein is an approach that is independent of the genetic background of the antibody-producing host and therefore can be expected to be compatible with other eukaryotic expression hosts such as P. pastoris or mammalian cells.
我们描述了一种名为REAL-Select的新方法,用于在酵母细胞表面非共价展示IgG分子,以进行抗体工程和筛选。它依赖于通过与外部固定的ZZ结构域结合,将分泌的天然全长抗体捕获在细胞表面,该结构域紧密结合抗体Fc。这有利于在抗体发现和开发过程中对酵母展示的IgG文库进行高通量筛选。在一个模型实验中,从与对照细胞的1:1,000,000混合物中分离出展示抗体的酵母细胞,证实了基因型-表型联系的维持。通过使用REAL-Select进行亲和力成熟,获得了具有改善结合特性的抗体,证明了该系统以天然形式展示抗体并通过流式细胞术检测亲和力细微变化的能力。细胞表面生物素化后用链霉亲和素-ZZ融合蛋白进行功能化,是一种独立于抗体产生宿主遗传背景的方法,因此有望与其他真核表达宿主如巴斯德毕赤酵母或哺乳动物细胞兼容。