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用于蛋白展示定量和低 pH 值蛋白工程的共价 SNAP 标签。

The covalent SNAP tag for protein display quantification and low-pH protein engineering.

机构信息

Department of Pharmaceutical Chemistry, The University of Kansas, Lawrence, Kansas, USA.

Department of Chemical & Petroleum Engineering, The University of Kansas, Lawrence, Kansas, USA.

出版信息

J Biotechnol. 2020 Aug 20;320:50-56. doi: 10.1016/j.jbiotec.2020.06.011. Epub 2020 Jun 16.

Abstract

Yeast display has become an important tool for modern biotechnology with many advantages for eukaryotic protein engineering. Antibody-based peptide interactions are often used to quantify yeast surface expression (e.g., by fusing a target protein to a FLAG, Myc, polyhistidine, or other peptide tag). However, antibody-antigen interactions require high stability for accurate quantification, and conventional tag systems based on such interactions may not be compatible with a low pH environment. In this study, a SNAP tag was introduced to a yeast display platform to circumvent disadvantages of conventional antibody display tags at low pH. SNAP forms a covalent bond with its small-molecule substrate, enabling precise and pH-independent protein display tagging. We compared the SNAP tag to conventional antibody-based peptide fusion and to direct fluorescent domain fusion using antibody fragment crystallizable (Fc) gene libraries as a case study in low pH protein engineering. Our results demonstrated that covalent SNAP tags can effectively quantify protein-surface expression at low pH, enabling the enrichment of Fc variants with increased affinity at pH 6.0 to the neonatal Fc receptor (FcRn). Incorporation of a covalent SNAP tag thus overcomes disadvantages of conventional antibody-based expression tags and enables protein-engineering applications outside of physiological pH.

摘要

酵母展示已成为现代生物技术的重要工具,在真核蛋白工程方面具有许多优势。基于抗体的肽相互作用常用于定量酵母表面表达(例如,将靶蛋白与 FLAG、Myc、多组氨酸或其他肽标签融合)。然而,抗体-抗原相互作用需要高度稳定才能进行准确的定量,而基于这种相互作用的传统标签系统可能不适应低 pH 环境。在这项研究中,引入了 SNAP 标签到酵母展示平台,以规避低 pH 下传统抗体展示标签的缺点。SNAP 与它的小分子底物形成共价键,从而实现精确且 pH 独立的蛋白质展示标记。我们将 SNAP 标签与传统的基于抗体的肽融合以及使用抗体片段可结晶(Fc)基因文库的直接荧光结构域融合进行了比较,作为低 pH 蛋白质工程的案例研究。我们的结果表明,共价 SNAP 标签可以有效地在低 pH 下定量蛋白质表面表达,从而能够在 pH 值为 6.0 时富集对新生儿 Fc 受体(FcRn)具有更高亲和力的 Fc 变体。因此,引入共价 SNAP 标签克服了传统基于抗体的表达标签的缺点,并能够在生理 pH 之外的蛋白质工程应用中使用。

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