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Modular interior loading and exterior decoration of a virus-like particle

机译:病毒样颗粒的模块化内部装载和外部装饰

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摘要

Virus-like particles (VLPs) derived from the bacteriophage P22 offer an interesting and malleable platform for encapsulation and multivalent presentation of cargo molecules. The packaging of cargo in P22 VLP is typically achieved through genetically enabled directed in vivo encapsulation. However, this approach does not allow control over the packing density and composition of the encapsulated cargos. Here, we have adopted an in vitro assembly approach to gain control over cargo packaging in P22. The packaging was controlled by closely regulating the stoichiometric ratio of cargo-fused-scaffold protein and wild-type scaffold protein during the in vitro assembly. In a “one-pot assembly reaction” coat protein subunits were incubated with varied ratios of wild-type scaffold protein and cargo-fused-scaffold protein, which resulted in the encapsulation of both components in a co-assembled capsid. These experiments demonstrate that an input stoichiometry can be used to achieve controlled packaging of multiple cargos within the VLP. The porous nature of P22 allows the escape and re-entry of wild-type scaffold protein from the assembled capsid but scaffold protein fused to a protein-cargo cannot traverse the capsid shell due to the size of the cargo. This has allowed us to control and alter the packing density by selectively releasing wild-type scaffold protein from the co-assembled capsids. We have demonstrated these concepts in the P22 system using an encapsulated streptavidin protein and have shown its highly selective interaction with biotin or biotin derivatives. Additionally, this system can be used to encapsulate small molecules coupled to biotin, or display large proteins, that cannot enter the capsid and thus remain available for the multivalent display on the exterior of the capsid when attached to a flexible biotinylated linker. Thus, we have developed a P22 system with controlled protein cargo composition and packing density, to which both small and large molecules can be attached at high copy number on the interior or exterior of the capsid.
机译:源自噬菌体P22的病毒样颗粒(VLP)为包裹和多价呈递货物分子提供了有趣且具有延展性的平台。 P22 VLP中的货物包装通常是通过遗传支持的定向体内封装来实现的。但是,这种方法不允许控制封装货物的包装密度和组成。在这里,我们采用了体外组装方法来控制P22中的货物包装。通过在体外组装过程中严密调节货物融合支架蛋白和野生型支架蛋白的化学计量比来控制包装。在“一锅组装反应”中,外壳蛋白亚基与不同比例的野生型支架蛋白和货运融合支架蛋白一起孵育,这导致两种组分都被包封在共组装的衣壳中。这些实验证明,输入化学计量可用于实现VLP内多种货物的受控包装。 P22的多孔性质允许野生型支架蛋白从组装的衣壳中逸出并重新进入,但由于货物的大小,融合到蛋白货物上的支架蛋白无法穿过衣壳。这使我们能够通过从共组装的衣壳中选择性释放野生型支架蛋白来控制和改变包装密度。我们已经在使用封装的链霉亲和素蛋白的P22系统中证明了这些概念,并显示了其与生物素或生物素衍生物的高度选择性相互作用。此外,该系统可用于封装与生物素偶联的小分子,或展示大蛋白,这些蛋白无法进入衣壳,因此当连接到柔性生物素化连接子后,仍可用于衣壳外部的多价展示。因此,我们开发了一种具有可控制的蛋白质货物组成和堆积密度的P22系统,小分子和大分子都可以高拷贝数附着在衣壳的内部或外部,并可以附着在其上。

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