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蛋白质笼:从基础到高级应用。

Protein Cages: From Fundamentals to Advanced Applications.

机构信息

Laboratory of Organic Chemistry, ETH Zurich, 8093 Zurich, Switzerland.

出版信息

Chem Rev. 2022 May 11;122(9):9145-9197. doi: 10.1021/acs.chemrev.1c00877. Epub 2022 Apr 8.

Abstract

Proteins that self-assemble into polyhedral shell-like structures are useful molecular containers both in nature and in the laboratory. Here we review efforts to repurpose diverse protein cages, including viral capsids, ferritins, bacterial microcompartments, and designed capsules, as vaccines, drug delivery vehicles, targeted imaging agents, nanoreactors, templates for controlled materials synthesis, building blocks for higher-order architectures, and more. A deep understanding of the principles underlying the construction, function, and evolution of natural systems has been key to tailoring selective cargo encapsulation and interactions with both biological systems and synthetic materials through protein engineering and directed evolution. The ability to adapt and design increasingly sophisticated capsid structures and functions stands to benefit the fields of catalysis, materials science, and medicine.

摘要

能够自我组装成多面体壳状结构的蛋白质,无论是在自然界还是在实验室中,都是非常有用的分子容器。在这里,我们回顾了将各种蛋白质笼(包括病毒衣壳、铁蛋白、细菌微区室和设计的胶囊)重新用作疫苗、药物输送载体、靶向成像剂、纳米反应器、用于控制材料合成的模板、用于构建高级结构的构建块等的努力。深入了解自然系统的构建、功能和进化的原理,对于通过蛋白质工程和定向进化来定制选择性货物封装以及与生物系统和合成材料的相互作用至关重要。适应和设计越来越复杂的衣壳结构和功能的能力将使催化、材料科学和医学领域受益。

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