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

机译:模块内部加载和外部装饰的病毒样颗粒

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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 wildtype 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:病毒样颗粒(种)的噬菌体第22位提供一个有趣的和封装和可塑的平台多价的货物分子。包装的货物通常是第22位车牌区域通过基因定向在启用体封装。不允许控制包装密度和封装的货物的成分。采用了一种体外组装的方法控制货物包装在第22位。包装是由紧密调节控制cargo-fused-scaffold的化学计量比蛋白质和蛋白质在野生型支架体外组装。反应”外壳蛋白亚基被孵化不同比率的野生型支架蛋白质和cargo-fused-scaffold蛋白质,导致在两个组件的封装co-assembled衣壳。证明一个输入化学计量学用于实现控制包装的多车牌区域内的货物。允许逃避和野生型的重返大气层支架组装的蛋白质衣壳脚手架蛋白protein-cargo不能融合遍历衣壳壳的大小货物。包装密度选择性地释放从co-assembled野生型脚手架蛋白衣壳。第22位系统使用一个封装链霉亲和素蛋白质和显示它的高度选择性相互作用与生物素或生物素衍生品。此外,可以使用这个系统封装小分子与生物素,或显示大的蛋白质,不能进入衣壳,因此仍然是可用的多价的显示外观的衣壳当连接到一个灵活的生物素化的链接器。因此,我们已经开发出一种第22位系统控制蛋白质货物成分和包装密度,这两个小型和大型分子在高拷贝数可以连接吗衣壳的内部或外部。

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