Grindel Brian J, Engel Brian J, Hall Carolyn G, Kelderhouse Lindsay E, Lucci Anthony, Zacharias Niki M, Takahashi Terry T, Millward Steven W
Department of Cancer Systems Imaging, MD Anderson Cancer Center, Houston, Texas 77030, United States.
Department of Breast Surgical Oncology, MD Anderson Cancer Center, Houston, Texas 77030, United States.
ACS Omega. 2020 Sep 22;5(39):25440-25455. doi: 10.1021/acsomega.0c03990. eCollection 2020 Oct 6.
Directed evolution is a powerful tool for the selection of functional ligands from molecular libraries. Extracellular domains (ECDs) of cell surface receptors are common selection targets for therapeutic and imaging agent development. Unfortunately, these proteins are often post-translationally modified and are therefore unsuitable for expression in bacterial systems. Directional immobilization of these targets is further hampered by the absence of biorthogonal groups for site-specific chemical conjugation. We have developed a nonadherent mammalian expression system for rapid, high-yield expression of biotinylated ECDs. ECDs from EGFR, HER2, and HER3 were site-specifically biotinylated and recovered from the cell culture supernatant with yields of up to 10 mg/L at >90% purity. Biotinylated ECDs also contained a protease cleavage site for rapid and selective release of the ECD after immobilization on avidin/streptavidin resins and library binding. A model mRNA display selection round was carried out against the HER2 ECD with the HER2 affibody expressed as an mRNA-protein fusion. HER2 affibody-mRNA fusions were selectively released by thrombin and quantitative PCR revealed substantial improvements in the enrichment of functional affibody-mRNA fusions relative to direct PCR amplification of the resin-bound target. This methodology allows rapid purification of high-quality targets for directed evolution and selective elution of functional sequences at the conclusion of each selection round.
定向进化是从分子文库中筛选功能性配体的有力工具。细胞表面受体的胞外结构域(ECDs)是治疗和成像剂开发中常见的筛选靶点。不幸的是,这些蛋白质经常发生翻译后修饰,因此不适合在细菌系统中表达。由于缺乏用于位点特异性化学偶联的生物正交基团,这些靶点的定向固定进一步受到阻碍。我们开发了一种非粘附性哺乳动物表达系统,用于生物素化ECDs的快速、高产表达。来自表皮生长因子受体(EGFR)、人表皮生长因子受体2(HER2)和人表皮生长因子受体3(HER3)的ECDs被位点特异性生物素化,并从细胞培养上清液中回收,产量高达10 mg/L,纯度>90%。生物素化的ECDs还包含一个蛋白酶切割位点,用于在固定到抗生物素蛋白/链霉抗生物素蛋白树脂上并与文库结合后快速、选择性地释放ECD。针对HER2 ECD进行了一轮模型mRNA展示筛选,其中HER2亲和体以mRNA-蛋白质融合体的形式表达。HER2亲和体-mRNA融合体通过凝血酶选择性释放,定量PCR显示,相对于直接PCR扩增树脂结合的靶点,功能性亲和体-mRNA融合体的富集有了显著改善。这种方法允许快速纯化用于定向进化的高质量靶点,并在每个筛选轮次结束时选择性洗脱功能序列。