Department of Biomedical Engineering, University of Minnesota, Minneapolis, Minnesota 55455, United States.
ACS Synth Biol. 2023 Feb 17;12(2):634-638. doi: 10.1021/acssynbio.2c00563. Epub 2023 Jan 19.
Low-affinity protein binders are emerging as valuable domains for therapeutic applications because of their higher specificity when presented in multivalent ligands that increase the overall strength and selectivity of receptor binding. discovery of low-affinity binders would be enhanced by the large library sizes attainable with selection systems, but these platforms generally maximize recovery of high-affinity monovalent binders. Here, we present a facile technology that uses rolling circle amplification to create homomultivalent libraries. We show proof of principle of this approach in ribosome display with off-rate selections of a bivalent ligand against monovalent and bivalent targets, thereby demonstrating high enrichment (up to 166-fold) against a low-affinity target that is bivalent but not monovalent. This approach to homomultivalent library construction can be applied to any binder tolerant of N- and C-terminal fusions and provides a platform for performing display selections with controlled protein valency and orientation.
低亲和力蛋白结合物因其在多价配体中呈现出更高的特异性而成为治疗应用中有价值的结构域,这些配体增加了受体结合的整体强度和选择性。 选择系统可获得大容量文库,从而促进了低亲和力结合物的发现,但这些平台通常最大限度地回收高亲和力单价结合物。 在这里,我们提出了一种使用滚环扩增来创建同价多聚体文库的简便技术。 我们通过针对单价和二价靶标的二价配体的离解速率选择,在核糖体展示中证明了该方法的原理,从而证明了对二价但非单价的低亲和力靶标进行高富集(高达 166 倍)。 这种同价多聚体文库构建方法可应用于任何耐受 N 和 C 末端融合的结合物,并为进行具有受控蛋白价态和取向的展示选择提供了平台。