ACS Comb Sci. 2019 Dec 9;21(12):817-832. doi: 10.1021/acscombsci.9b00147. Epub 2019 Nov 20.
When isolating binders from yeast displayed combinatorial libraries, a soluble, recombinantly expressed form of the target protein is typically utilized. As an alternative, we describe the use of target proteins displayed as surface fusions on magnetized yeast cells. In our strategy, the target protein is coexpressed on the yeast surface with an iron oxide binding protein; incubation of these yeast cells with iron oxide nanoparticles results in their magnetization. Subsequently, binder cells that interact with the magnetized target cells can be isolated using a magnet. Using a known binder-target pair with modest binding affinity ( ≈ 400 nM), we showed that a binder present at low frequency (1 in 10) could be enriched more than 100-fold, in a single round of screening, suggesting feasibility of screening combinatorial libraries. Subsequently, we screened yeast display libraries of Sso7d and nanobody variants against yeast displayed targets to isolate binders specific to the cytosolic domain of the mitochondrial membrane protein TOM22 ( ≈ 272-1934 nM) and the extracellular domain of the c-Kit receptor ( ≈ 93 to > 2000 nM). Additional studies showed that the TOM22 binders identified using this approach could be used for the enrichment of mitochondria from cell lysates, thereby confirming binding to the native mitochondrial protein. The ease of expressing a membrane protein or a domain thereof as a yeast cell surface fusion-in contrast to recombinant soluble expression-makes the use of yeast-displayed targets particularly attractive. Therefore, we expect the use of magnetized yeast cell targets will enable efficient isolation of binders to membrane proteins.
当从酵母展示的组合文库中分离结合物时,通常使用目标蛋白的可溶性重组表达形式。作为替代方法,我们描述了使用作为表面融合体展示在磁化酵母细胞上的目标蛋白。在我们的策略中,目标蛋白与氧化铁结合蛋白在酵母表面上共表达;将这些酵母细胞与氧化铁纳米颗粒孵育会导致它们磁化。随后,可以使用磁铁分离与磁化靶细胞相互作用的结合细胞。使用具有适度结合亲和力(≈400 nM)的已知结合物-靶物对,我们表明,在单个筛选轮中,可以将低频(1 比 10)存在的结合物富集 100 倍以上,这表明筛选组合文库的可行性。随后,我们针对酵母展示的靶标筛选了 Sso7d 和纳米抗体变体的酵母展示文库,以分离与线粒体膜蛋白 TOM22 的胞质结构域(≈272-1934 nM)和 c-Kit 受体的细胞外结构域特异性结合的结合物(≈93 至>2000 nM)。进一步的研究表明,使用这种方法鉴定的 TOM22 结合物可用于从细胞裂解物中富集线粒体,从而证实与天然线粒体蛋白的结合。与重组可溶性表达相比,膜蛋白或其结构域作为酵母细胞表面融合体表达的容易性使得使用酵母展示的靶标特别有吸引力。因此,我们预计使用磁化酵母细胞靶标将能够有效地分离到膜蛋白的结合物。