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利用酵母表面展示组合Fc文库筛选技术构建免疫球蛋白Fc异源二聚体

Engineering of Immunoglobulin Fc Heterodimers Using Yeast Surface-Displayed Combinatorial Fc Library Screening.

作者信息

Choi Hye-Ji, Kim Ye-Jin, Choi Dong-Ki, Kim Yong-Sung

机构信息

Department of Molecular Science and Technology, Ajou University, Suwon 16499, Korea.

出版信息

PLoS One. 2015 Dec 16;10(12):e0145349. doi: 10.1371/journal.pone.0145349. eCollection 2015.

Abstract

Immunoglobulin Fc heterodimers, which are useful scaffolds for the generation of bispecific antibodies, have been mostly generated through structure-based rational design methods that introduce asymmetric mutations into the CH3 homodimeric interface to favor heterodimeric Fc formation. Here, we report an approach to generate heterodimeric Fc variants through directed evolution combined with yeast surface display. We developed a combinatorial heterodimeric Fc library display system by mating two haploid yeast cell lines, one haploid cell line displayed an Fc chain library (displayed FcCH3A) with mutations in one CH3 domain (CH3A) on the yeast cell surface, and the other cell line secreted an Fc chain library (secreted FcCH3B) with mutations in the other CH3 domain (CH3B). In the mated cells, secreted FcCH3B is displayed on the cell surface through heterodimerization with the displayed FcCH3A, the detection of which enabled us to screen the library for heterodimeric Fc variants. We constructed combinatorial heterodimeric Fc libraries with simultaneous mutations in the homodimer-favoring electrostatic interaction pairs K370-E357/S364 or D399-K392/K409 at the CH3 domain interface. High-throughput screening of the libraries using flow cytometry yielded heterodimeric Fc variants with heterodimer-favoring CH3 domain interface mutation pairs, some of them showed high heterodimerization yields (~80-90%) with previously unidentified CH3 domain interface mutation pairs, such as hydrogen bonds and cation-π interactions. Our study provides a new approach for engineering Fc heterodimers that could be used to engineer other heterodimeric protein-protein interactions through directed evolution combined with yeast surface display.

摘要

免疫球蛋白Fc异二聚体是用于生成双特异性抗体的有用支架,大多通过基于结构的合理设计方法生成,该方法将不对称突变引入CH3同二聚体界面以促进异二聚体Fc的形成。在此,我们报告一种通过定向进化结合酵母表面展示来生成异二聚体Fc变体的方法。我们通过使两个单倍体酵母细胞系交配,开发了一种组合异二聚体Fc文库展示系统,一个单倍体细胞系在酵母细胞表面展示具有一个CH3结构域(CH3A)突变的Fc链文库(展示的FcCH3A),另一个细胞系分泌具有另一个CH3结构域(CH3B)突变的Fc链文库(分泌的FcCH3B)。在交配细胞中,分泌的FcCH3B通过与展示的FcCH3A异二聚化而展示在细胞表面,对其进行检测使我们能够筛选文库以获得异二聚体Fc变体。我们构建了在CH3结构域界面处同二聚体偏好的静电相互作用对K370-E357/S364或D399-K392/K409同时发生突变的组合异二聚体Fc文库。使用流式细胞术对文库进行高通量筛选,得到了具有异二聚体偏好的CH3结构域界面突变对的异二聚体Fc变体,其中一些与以前未鉴定的CH3结构域界面突变对(如氢键和阳离子-π相互作用)显示出高异二聚化产率(约80-90%)。我们的研究为工程化Fc异二聚体提供了一种新方法,该方法可用于通过定向进化结合酵母表面展示来工程化其他异二聚体蛋白质-蛋白质相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b52a/4682967/45f1b6ed6d06/pone.0145349.g001.jpg

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