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Directed Protein Packaging within Outer Membrane Vesicles from Escherichia coli: Design Production and Purification

机译:大肠杆菌外膜囊泡中的定向蛋白包装:设计生产和纯化

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摘要

An increasing interest in applying synthetic biology techniques to program outer membrane vesicles (OMV) are leading to some very interesting and unique applications for OMV where traditional nanoparticles are proving too difficult to synthesize. To date, all Gram-negative bacteria have been shown to produce OMV demonstrating packaging of a variety of cargo that includes small molecules, peptides, proteins and genetic material. Based on their diverse cargo, OMV are implicated in many biological processes ranging from cell-cell communication to gene transfer and delivery of virulence factors depending upon which bacteria are producing the OMV. Only recently have bacterial OMV become accessible for use across a wide range of applications through the development of techniques to control and direct packaging of recombinant proteins into OMV. This protocol describes a method for the production, purification, and use of enzyme packaged OMV providing for improved overall production of recombinant enzyme, increased vesiculation, and enhanced enzyme stability. Successful utilization of this protocol will result in the creation of a bacterial strain that simultaneously produces a recombinant protein and directs it for OMV encapsulation through creating a synthetic linkage between the recombinant protein and an outer membrane anchor protein. This protocol also details methods for isolating OMV from bacterial cultures as well as proper handling techniques and things to consider when adapting this protocol for use for other unique applications such as: pharmaceutical drug delivery, medical diagnostics, and environmental remediation.
机译:对应用合成生物学技术编程外膜囊泡(OMV)的兴趣日益浓厚,这导致了OMV的一些非常有趣且独特的应用,其中传统的纳米粒子被证明太难合成。迄今为止,已显示所有革兰氏阴性细菌均会产生OMV,这表明包装了各种货物,包括小分子,肽,蛋白质和遗传物质。基于它们的不同种类,OMV涉及许多生物学过程,从细胞间通讯到基因转移和毒力因子的传递,取决于哪些细菌在生产OMV。直到最近,细菌的OMV才得以通过控制重组蛋白并将其包装到OMV中的技术开发而在广泛的应用中使用。该协议描述了一种生产,纯化和使用酶包装的OMV的方法,可改善重组酶的整体生产,增加囊泡化和增强酶的稳定性。该协议的成功利用将导致细菌菌株的产生,该菌株同时产生重组蛋白,并通过在重组蛋白和外膜锚定蛋白之间建立合成连接,指导其进行OMV封装。该协议还详细说明了从细菌培养物中分离OMV的方法,以及适当的处理技术和在将该协议用于其他独特应用(例如:药物输送,医学诊断和环境修复)时要考虑的事项。

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