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酵母交配作为一种通过展示方法高效发现和工程化抗体的工具。

Yeast Mating as a Tool for Highly Effective Discovery and Engineering of Antibodies via Display Methodologies.

作者信息

Baek Du-San, Park Seong-Wook, Adams Cynthia, Dimitrov Dimiter S, Kim Yong-Sung

机构信息

Center for Antibody Therapeutics, Division of Infectious Diseases, Department of Medicine, University of Pittsburgh Medical School, Pittsburgh, PA, USA.

Department of Molecular Science and Technology, Ajou University, Suwon, Republic of Korea.

出版信息

Methods Mol Biol. 2022;2491:313-333. doi: 10.1007/978-1-0716-2285-8_17.

Abstract

Yeast surface display (YSD) is a powerful methodology for discovery and engineering of antibodies, and the yeast mating has been used to overcome low transformation efficiency of yeast in antibody library generation. We developed an optimized method of yeast mating for generating a large, combinatorial antibody fragment library and heterodimeric protein library by cellular fusion between two haploid cells carrying different library each other. This method allows for increased diversity in screening of target-specific fragment antigen-binding (Fab) antibodies as well as in the development of heterodimeric Fc variants for bi-specific antibody generation and T-cell receptor (TCR). Here we describe the efficient isolation of human antibodies against the activated GTP-bound form of the oncogenic Ras mutant (KRas-GTP) by sequential isolation of their heavy chains (HCs) followed by combination with light chains (LCs) via the yeast mating process. This strategy facilitates guided selection of the antigen-specific HC with either a fixed functional LC, which has cytosol penetrating ability, or an LC library to generate the Fab. It also allows for deeper exploration of a sequence space with fixed diversity, leading to a higher probability of successful isolation of human antibodies with high specificity and affinity.

摘要

酵母表面展示(YSD)是一种用于抗体发现和工程改造的强大方法,酵母交配已被用于克服酵母在抗体文库构建中转化效率低的问题。我们开发了一种优化的酵母交配方法,通过携带不同文库的两个单倍体细胞之间的细胞融合来构建大型组合抗体片段文库和异源二聚体蛋白文库。这种方法能够增加在筛选靶标特异性片段抗原结合(Fab)抗体以及开发用于双特异性抗体生成的异源二聚体Fc变体和T细胞受体(TCR)方面的多样性。在此,我们描述了通过依次分离重链(HC),然后通过酵母交配过程与轻链(LC)组合,高效分离针对致癌性Ras突变体(KRas-GTP)的活化GTP结合形式的人源抗体。该策略有助于使用具有胞质穿透能力的固定功能性轻链或轻链文库来引导选择抗原特异性重链以生成Fab。它还允许在固定多样性的情况下更深入地探索序列空间,从而提高成功分离具有高特异性和亲和力的人源抗体的概率。

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