Department of Chemistry, University of Basel, Basel 4058, Switzerland.
Swiss Nanoscience Institute, University of Basel, Basel 4056, Switzerland.
ACS Synth Biol. 2023 Feb 17;12(2):419-431. doi: 10.1021/acssynbio.2c00351. Epub 2023 Feb 2.
Yeast surface display is a valuable tool for protein engineering and directed evolution; however, significant variability in the copy number (i.e., avidity) of displayed variants on the yeast cell wall complicates screening and selection campaigns. Here, we report an engineered titratable display platform that modulates the avidity of Aga2-fusion proteins on the yeast cell wall dependent on the concentration of the anhydrotetracycline (aTc) inducer. Our design is based on a genomic Aga1 gene copy and an episomal Aga2-fusion construct both under the control of an aTc-dependent transcriptional regulator that enables stoichiometric and titratable expression, secretion, and display of Aga2-fusion proteins. We demonstrate tunable display levels over 2-3 orders of magnitude for various model proteins, including glucose oxidase enzyme variants, mechanostable dockerin-binding domains, and anti-PDL1 affibody domains. By regulating the copy number of displayed proteins, we demonstrate the effects of titratable avidity levels on several specific phenotypic activities, including enzyme activity and cell adhesion to surfaces under shear flow. Finally, we show that titrating down the display level allows yeast-based binding affinity measurements to be performed in a regime that avoids ligand depletion effects while maintaining small sample volumes, avoiding a well-known artifact in yeast-based binding assays. The ability to titrate the multivalency of proteins on the yeast cell wall through simple inducer control will benefit protein engineering and directed evolution methodology relying on yeast display for broad classes of therapeutic and diagnostic proteins of interest.
酵母表面展示是蛋白质工程和定向进化的有力工具;然而,细胞壁上展示变体的拷贝数(即亲和力)存在显著的可变性,这使得筛选和选择工作变得复杂。在这里,我们报告了一种经过工程改造的可滴定展示平台,该平台可根据无水四环素(aTc)诱导剂的浓度调节 Aga2 融合蛋白在酵母细胞壁上的亲和力。我们的设计基于基因组 Aga1 基因拷贝和一个附加型 Aga2 融合构建体,这两者都受 aTc 依赖性转录调节剂的控制,该调节剂能够实现 Aga2 融合蛋白的化学计量和滴定式表达、分泌和展示。我们展示了针对各种模型蛋白的可调节显示水平,跨越 2-3 个数量级,包括葡萄糖氧化酶变体、机械稳定的 dockerin 结合结构域和抗 PDL1 亲和体结构域。通过调节展示蛋白的拷贝数,我们展示了滴定亲和力水平对几种特定表型活性的影响,包括酶活性和在剪切流下细胞对表面的粘附。最后,我们表明,降低显示水平可以使基于酵母的结合亲和力测量在避免配体耗尽效应的同时,在小样本量下进行,避免了基于酵母的结合测定中已知的一个常见假象。通过简单的诱导剂控制来滴定酵母细胞壁上蛋白的多价性的能力将有益于依赖酵母展示的广泛类别的治疗和诊断蛋白的蛋白质工程和定向进化方法。