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Designing novel construction for cell surface display of protein E on Escherichia coli using non-classical pathway based on Lpp-OmpA

机译:使用基于Lpp-OmpA的非经典途径设计新的E蛋白在大肠杆菌细胞表面展示的结构

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摘要

Today, transference of recombinant protein on the outer surface of bacteria is deemed as a valuable process for various applications in biotechnology including preparation of vaccines. In this study, Lpp-OmpA structure was used to present outer membrane protein E of Haemophilus influenzae on E. coli outer membrane. Also, a structure was designed according to Lpp-OmpA based on non-classical secretion pathway using bioinformatics software such as MEMSAT-SVM, ScrotumP and SignalP where it lacked any signal peptide at its N-terminal. Potential of this structure in the presentation of protein E on the surface of E. coli through non-classical pathway was indicated by western blotting, SDS page and fluorescent microscopy techniques, similarly its effectiveness was compared with Lpp-OmpA system. The results of the current study showed that the new structure had higher efficiency than Lpp-OmpA, and it could transport protein E on outer membrane well. This study is the first report in the presentation of H. influenzae PE onto the surface of E. coli by Lpp-OmpA, and the structure originated from Lpp-OmpA, according to the non-classical secretion pathway. Our results suggest that non-classical secretion pathway may be exploited as a new secretory pathway on the outer surface of the cell for recombinant proteins.Electronic supplementary materialThe online version of this article (doi:10.1186/s13568-017-0350-0) contains supplementary material, which is available to authorized users.
机译:如今,重组蛋白在细菌外表面的转移被认为是生物技术中各种应用(包括疫苗制备)的重要过程。在这项研究中,Lpp-OmpA结构用于在大肠杆菌外膜上呈递流感嗜血杆菌的外膜蛋白E。另外,根据Lpp-OmpA,使用生物信息学软件,例如MEMSAT-SVM,ScrotumP和SignalP,基于非经典的分泌途径设计了一个结构,该结构的N端缺少任何信号肽。 Western blotting,SDS页面和荧光显微镜技术表明了这种结构通过非经典途径在大肠杆菌表面呈递蛋白质E的潜力,并与Lpp-OmpA系统进行了类似的比较。目前的研究结果表明,该新结构比Lpp-OmpA具有更高的效率,并且可以很好地在外膜上转运蛋白E。这项研究是通过非典型分泌途径将流感嗜血杆菌PE通过Lpp-OmpA呈递到大肠杆菌表面的第一篇报道,该结构起源于Lpp-OmpA。我们的结果表明,非经典的分泌途径可能被用作重组蛋白在细胞外表面的新分泌途径。电子补充材料本文的在线版本(doi:10.1186 / s13568-017-0350-0)包含补充材料,授权用户可以使用。

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