Versatope Therapeutics, Lowell, MA, USA.
Nancy E. and Peter C. Meinig School of Biomedical Engineering, Weill Hall, Ithaca, NY, USA.
Methods Mol Biol. 2024;2843:195-216. doi: 10.1007/978-1-0716-4055-5_13.
Engineered outer membrane vesicles (OMVs) derived from Gram-negative bacteria are a promising vaccine technology for developing immunity against diverse pathogens. However, antigen display on OMVs can be challenging to control and highly variable due to bottlenecks in protein expression and localization to the bacterial host cell's outer membrane, especially for bulky and complex antigens. Here, we describe methods related to a universal vaccine technology called AvidVax (avidin-based vaccine antigen crosslinking) for rapid and simplified assembly of antigens on the exterior of OMVs during vaccine development. The AvidVax platform involves remodeling the OMV surface with multiple copies of a synthetic antigen-binding protein (SNAP), which is an engineered fusion protein comprised of an outer membrane scaffold protein linked to a biotin-binding protein. The resulting SNAPs enable efficient decoration of OMVs with a molecularly diverse array of biotinylated subunit antigens, including globular and membrane proteins, glycans and glycoconjugates, haptens, lipids, nucleic acids, and short peptides. We detail the key steps in the AvidVax vaccine production pipeline including preparation and isolation of SNAP-OMVs, biotinylation and enrichment of vaccine antigens, and formulation and characterization of antigen-loaded SNAP-OMVs.
工程化的革兰氏阴性细菌外膜囊泡(OMVs)是一种很有前途的疫苗技术,可用于针对多种病原体产生免疫。然而,由于蛋白质表达和定位于细菌宿主细胞外膜的瓶颈,OMVs 上的抗原展示难以控制且高度可变,尤其是对于体积大和复杂的抗原。在这里,我们描述了一种名为 AvidVax(基于亲和素的疫苗抗原交联)的通用疫苗技术相关的方法,用于在疫苗开发过程中快速和简化将抗原组装到 OMV 的外表面。AvidVax 平台涉及使用多个合成抗原结合蛋白(SNAP)重塑 OMV 表面,SNAP 是一种由外膜支架蛋白与生物素结合蛋白融合而成的工程融合蛋白。由此产生的 SNAP 能够有效地用分子上多样化的生物素化亚单位抗原(包括球状和膜蛋白、聚糖和糖缀合物、半抗原、脂质、核酸和短肽)对 OMV 进行装饰。我们详细介绍了 AvidVax 疫苗生产管道中的关键步骤,包括 SNAP-OMVs 的制备和分离、疫苗抗原的生物素化和富集,以及负载抗原的 SNAP-OMVs 的制剂和表征。