Department of Molecular and Cellular Biology, College of Biological Science, University of Guelph, 50 Stone Rd E, Guelph, Ontario N1G2W1, Canada.
CIFAR Azrieli Global Scholars Program, Canadian Institute for Advanced Research, MaRS Centre West Tower, 661 University Avenue, Toronto, Ontario M5G1M1, Canada.
Protein Eng Des Sel. 2021 Feb 15;34. doi: 10.1093/protein/gzab014.
Targeted inhibition of misregulated protein-protein interactions (PPIs) has been a promising area of investigation in drug discovery and development for human diseases. However, many constraints remain, including shallow binding surfaces and dynamic conformation changes upon interaction. A particularly challenging aspect is the undesirable off-target effects caused by inherent structural similarity among the protein families. To tackle this problem, phage display has been used to engineer PPIs for high-specificity binders with improved binding affinity and greatly reduced undesirable interactions with closely related proteins. Although general steps of phage display are standardized, library design is highly variable depending on experimental contexts. Here in this review, we examined recent advances in the structure-based combinatorial library design and the advantages and limitations of different approaches. The strategies described here can be explored for other protein-protein interactions and aid in designing new libraries or improving on previous libraries.
靶向抑制失调的蛋白质-蛋白质相互作用(PPIs)一直是药物发现和开发治疗人类疾病的一个很有前途的研究领域。然而,仍存在许多限制,包括结合表面浅和相互作用时的动态构象变化。一个特别具有挑战性的方面是由于蛋白家族之间固有的结构相似性而导致的不理想的脱靶效应。为了解决这个问题,噬菌体展示已被用于工程化 PPI,以获得具有更高结合亲和力和大大降低与密切相关的蛋白质不良相互作用的高特异性结合物。尽管噬菌体展示的一般步骤已经标准化,但文库设计高度依赖于实验背景,变化很大。在这篇综述中,我们考察了基于结构的组合文库设计的最新进展,以及不同方法的优缺点。这里描述的策略可以用于其他蛋白质-蛋白质相互作用,并有助于设计新的文库或改进以前的文库。