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Peptide-directed encapsulation of inorganic nanoparticles into protein containers

机译:Peptide-directed封装的无机纳米粒子成蛋白质的容器

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Biomolecules can be combined with inorganic compounds to unite biological features with the chemical and physical properties of abiotic materials. In particular, protein containers, with their inherent ability to encapsulate cargo molecules, are perfect platforms for the generation of multifunctional assemblies. However, encapsulation of foreign cargo is immensely challenging due to the lack of specific interactions between cargo and container. Here, we demonstrate that the highly specific cargo-loading mechanism of the bacterial nanocompartment encapsulin can be employed for encapsulation of artificial cargo like inorganic nanoparticles. For this purpose, container-filling gold nanoparticles were decorated with a small number of encapsulin cargo-loading peptides. By lock-and-key interaction between the peptides and the peptide-binding pockets on the inner container surface, the nanoparticles are encapsulated into encapsulin with extremely high efficiency. Most notably, peptide binding is independent from external factors such as ionic strength. Cargo-loading peptides may serve as generally applicable tool for efficient and specific encapsulation of cargo molecules into a proteinaceous compartment.
机译:生物分子可以与无机相结合与化合物联合生物特性非生物的化学和物理性质材料。与他们固有的能力来封装货物的分子,是完美的平台代的多功能组件。然而,封装的外国货物非常具有挑战性由于缺少具体货物和集装箱之间的相互作用。我们证明非常具体货物装载机制的细菌nanocompartment encapsulin可以使用封装的人工货物像无机纳米粒子。container-filling黄金纳米颗粒用少量encapsulin装饰货物装载肽。肽和之间的交互peptide-binding口袋内容器表面,纳米颗粒被封装到encapsulin以极高的效率。值得注意的是,独立于肽绑定离子强度等外部因素。货物装载肽可作为一般适用的高效和特定的工具货物封装成一个分子蛋白质的隔间。

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