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首页> 外文期刊>Applied and Environmental Microbiology >Novel Bacterial Surface Display Systems Based on Outer Membrane Anchoring Elements from the Marine Bacterium Vibrio anguillarum
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Novel Bacterial Surface Display Systems Based on Outer Membrane Anchoring Elements from the Marine Bacterium Vibrio anguillarum

机译:基于海洋细菌弧菌外膜固定元件的新型细菌表面显示系统

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Surface display of heterologous peptides and proteins such as receptors, antigens, and enzymes on live bacterial cells is of considerable value for various biotechnological and industrial applications. In this study, a series of novel cell surface display systems were examined by using Vibrio anguillarum outer membrane protein and outer membrane lipoprotein as anchoring motifs. These display systems consist of (i) the signal sequence and first 11 N-terminal amino acids of V. anguillarum outer membrane lipoprotein Wza, or the signal sequence and first 9 N-terminal amino acids of the mature major Escherichia coli lipoprotein Lpp, and (ii) transmembrane domains of V. anguillarum outer membrane proteins Omporf1, OmpU, or Omp26La. In order to assay the translocation efficiency of constructed display systems in bacteria, green fluorescent protein (GFP) was inserted to the systems and the results of GFP surface localization confirmed that four of the six surface display systems could successfully display GFP on the E. coli surface. For assaying its potential application in live bacteria carrier vaccines, an excellent display system Wza-Omporf1 was fused with the major capsid protein (MCP) of large yellow croaker iridovirus and introduced into attenuated V. anguillarum strain MVAV6203, and subsequent analysis of MCP surface localization proved that the novel display system Wza-Omporf1 could function as a strong tool in V. anguillarum carrier vaccine development.
机译:异源肽和蛋白质(例如受体,抗原和酶)在活细菌细胞上的表面展示对于各种生物技术和工业应用具有重要价值。在这项研究中,通过使用鳗弧菌外膜蛋白和外膜脂蛋白作为锚定基序,研究了一系列新颖的细胞表面展示系统。这些展示系统由(i)鳗弧菌外膜脂蛋白Wza的信号序列和前11个N末端氨基酸,或成熟的主要大肠杆菌脂蛋白Lpp的信号序列和前9个N末端氨基酸组成,以及(ii)鳗弧菌外膜蛋白Omporf1,OmpU或Omp26La的跨膜结构域。为了测定构建的展示系统在细菌中的转运效率,将绿色荧光蛋白(GFP)插入到系统中,GFP表面定位的结果证实了六个表面展示系统中的四个可以在大肠杆菌中成功展示GFP。表面。为了测定其在活细菌载体疫苗中的潜在应用,将优良的展示系统Wza-Omporf1与大黄鱼虹膜病毒的主要衣壳蛋白(MCP)融合,并引入减毒的安圭拉弧菌菌株MVAV6203,并随后对MCP表面定位进行分析证明了新颖的展示系统Wza-Omporf1可以作为鳗弧菌载体疫苗开发的强大工具。

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