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Construction of a bacterial surface display system based on outer membrane protein F

机译:基于外膜蛋白F的细菌表面展示系统的构建

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Bacterial surface display systems were developed to surface expose heterologous proteins or peptides for different applications, such as peptide libraries screening and live bacterial vaccine design. Various outer membrane proteins, such as outer membrane protein A (OmpA), OmpC and outer membrane pore protein E precursor (PhoE), have been used as carriers for surface display, fused to the proteins or peptides of interest in Gram-negative bacteria. Here, we investigated the utility of constitutively expressed OmpF for the display of foreign immune epitopes on the Escherichia coli cell surface and then compared it with plasmid-induced expression of OmpF and OmpC. Enhanced expression of OmpF was linked to a mutation in the OmpF promoter sequence. This mutation rendered OmpF an ideal carrier protein for the enriched display of a target of interest on the bacterial surface. To this end, we grafted two peptides, harboring important epitopes of the hepatitis B virus (HBV) S antigen and human papilloma virus (HPV) L2 protein, onto OmpF of E. coli by genome editing. The resultant fused OmpF proteins were constitutively expressed in the edited E. coli and purified by membrane component extraction. The epitope that displayed on the bacterial surface was verified by SDS-PAGE, western blotting, flow cytometry, and immunoelectron microscopy of the intact bacteria. We further compared this constitutive expression with plasmid-induced expression of OmpF and OmpC in bacterial cells using the same methods for verification. We found that plasmid-induced expression is much less efficient than constitutive expression of OmpF from the bacterial genome. Enhanced expression of OmpF in a plasmid-independent manner provides an amenable way to display epitopes on the bacterial surface and sheds light on ways to engineer bacteria for biotechnological applications.
机译:开发了细菌表面展示系统以表面暴露用于不同应用的异源蛋白质或肽,例如肽库筛选和活细菌疫苗设计。各种外膜蛋白,例如外膜蛋白A(OmpA),OmpC和外膜孔蛋白E前体(PhoE),已被用作表面展示的载体,与革兰氏阴性细菌中感兴趣的蛋白或肽融合。在这里,我们调查了组成性表达的OmpF在大肠杆菌细胞表面上展示外来免疫表位的实用性,然后将其与质粒诱导的OmpF和OmpC表达进行了比较。 OmpF的增强表达与OmpF启动子序列中的突变相关。这种突变使OmpF成为理想的载体蛋白,可在细菌表面上丰富展示目标靶标。为此,我们通过基因组编辑将两种具有重要乙型肝炎病毒(HBV)S抗原和人乳头瘤病毒(HPV)L2蛋白表位的肽移植到大肠杆菌的OmpF上。所得融合的OmpF蛋白在编辑过的大肠杆菌中组成性表达,并通过膜成分提取纯化。通过SDS-PAGE,蛋白质印迹,流式细胞仪和完整细菌的免疫电子显微镜检查,验证了细菌表面上显示的表位。我们使用相同的验证方法,进一步比较了此组成型表达与质粒诱导的细菌细胞中OmpF和OmpC的表达。我们发现质粒诱导的表达比细菌基因组的OmpF组成型表达效率低得多。以不依赖质粒的方式增强OmpF的表达提供了一种在细菌表面展示抗原决定簇的简便方法,并阐明了为生物技术应用工程化细菌的方法。

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