Department of Biological Sciences, School of Life Sciences, Ulsan National Institute of Science and Technology (UNIST), Ulsan, Korea.
Biotechnol Bioeng. 2019 Nov;116(11):2843-2851. doi: 10.1002/bit.27129. Epub 2019 Aug 1.
Protein cage nanoparticles are widely used as targeted delivery nanoplatforms, because they have well-defined symmetric architectures, high biocompatibility, and enough plasticity to be modified to produce a range of different functionalities. Targeting peptides and ligands are often incorporated on the surface of protein cage nanoparticles. In this research, we adopted the SpyTag/SpyCatcher protein ligation system to covalently display target-specific affibody molecules on the exterior surface of bacteriophage P22 virus-like particles (VLP) and evaluated their modularity and efficacy of targeted delivery. We genetically introduced the 13 amino acid SpyTag peptide into the C-terminus of the P22 capsid protein to construct a target-tunable nanoplatform. We constructed two different SpyCatcher-fused affibody molecules as targeting ligands, SC-EGFRAfb and SC-HER2Afb, which selectively bind to EGFR and HER2 surface markers, respectively. We produced target-specific P22 VLP-based delivery nanoplatforms for the target cell lines by selectively combining SpyTagged P22 VLP and SC-fused affibody molecules. We confirmed its target-switchable modularity through cell imaging and verified the target-specific drug delivery efficacy of the affibody molecules displaying P22 VLP using cell viability assays. The P22 VLP-based delivery nanoplatforms can be used as multifunctional delivery vehicles by ligating other functional proteins, as well as affibody molecules. The interior cavity of P22 VLP can be also used to load cargoes like enzymes and therapeutic proteins. We anticipate that the nanoplatforms will provide new opportunities for developing target-specific functional protein delivery systems.
蛋白笼纳米颗粒被广泛用作靶向递药纳米平台,因为它们具有明确的对称结构、高生物相容性,并且具有足够的可塑性,可进行修饰以产生一系列不同的功能。靶向肽和配体通常被整合到蛋白笼纳米颗粒的表面。在这项研究中,我们采用 SpyTag/SpyCatcher 蛋白连接系统,将靶特异性亲和体分子共价展示在噬菌体 P22 病毒样颗粒 (VLP) 的外表面上,并评估了它们的靶向递药的模块化和功效。我们通过在 P22 衣壳蛋白的 C 末端遗传引入 13 个氨基酸的 SpyTag 肽,构建了一个靶标可调的纳米平台。我们构建了两种不同的 SpyCatcher 融合亲和体分子作为靶向配体,SC-EGFRAfb 和 SC-HER2Afb,分别选择性地与 EGFR 和 HER2 表面标志物结合。我们通过选择性地结合 SpyTagged P22 VLP 和 SC 融合亲和体分子,为靶细胞系生产了基于 P22 VLP 的靶向特异性递药纳米平台。我们通过细胞成像证实了其靶标可切换的模块化,并通过细胞活力测定验证了展示 P22 VLP 的亲和体分子的靶标特异性药物递药功效。基于 P22 VLP 的递药纳米平台可通过连接其他功能蛋白和亲和体分子,用作多功能递药载体。P22 VLP 的内部腔室也可用于装载酶和治疗性蛋白等货物。我们预计这些纳米平台将为开发靶标特异性功能蛋白递药系统提供新的机会。