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188宝金博页面版: Redesign of protein nanocages the way from 0D, 1D, 2D to 3D assembly

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内容提示: Redesign of protein nanocages: the way from0D, 1D, 2D to 3D assemblyChenyan Lv, Xiaorong Zhang, Yu Liu, Tuo Zhang, Hai Chen, Jiachen Zang,Bowen Zheng and Guanghua Zhao *Compartmentalization is a hallmark of living systems. Through compartmentalization, ubiquitous proteinnanocages such as viral capsids, ferritin, small heat shock proteins, and DNA-binding proteins fromstarved cells fulfill a variety of functions, while their shell-like structures hold great promise for variousapplications in the field of na...

文档格式:PDF | 页数:33 | 浏览次数:44 | 上传日期:2021-03-12 22:26:56 | 文档星级:
Redesign of protein nanocages: the way from0D, 1D, 2D to 3D assemblyChenyan Lv, Xiaorong Zhang, Yu Liu, Tuo Zhang, Hai Chen, Jiachen Zang,Bowen Zheng and Guanghua Zhao *Compartmentalization is a hallmark of living systems. Through compartmentalization, ubiquitous proteinnanocages such as viral capsids, ferritin, small heat shock proteins, and DNA-binding proteins fromstarved cells fulfill a variety of functions, while their shell-like structures hold great promise for variousapplications in the field of nanomedicine and nanotechnology. However, the number and structure ofnatural protein nanocages are limited, and these natural protein nanocages may not be suited for agiven application, which might impede their further application as nanovehicles, biotemplates or buildingblocks. To overcome these shortcomings, dif f erent strategies have been developed by scientists toconstruct artificial protein nanocages, and 1D, 2D and 3D protein arrays with protein nanocages asbuilding blocks through genetic and chemical modification to rival the size and functionality of naturalprotein nanocages. This review outlines the recent advances in the field of the design and constructionof artificial protein nanocages and their assemblies with higher order, summarizes the strategies forcreating the assembly of protein nanocages from zero-dimension to three dimensions, and introducestheir corresponding applications in the preparation of nanomaterials, electrochemistry, and drugdelivery. The review will highlight the roles of both the inter-subunit/intermolecular interactions at thekey interface and the protein symmetry in constructing and controlling protein nanocage assemblieswith dif f erent dimensions.1. IntroductionNature is fantastic in creating various kinds of supramolecularprotein architectures through natural selection and evolution.Among them, ubiquitous protein nanocages have receivedconsiderable attention due to various biological functions suchCite this: DOI: 10.1039/d0cs01349hCollege of Food Science and Nutritional Engineering, China Agricultural University,Beijing Key Laboratory of Functional Food from Plant Resources, Beijing 100083,China. E-mail: gzhao@cau.edu.cnChenyan LvChenyan Lv was born in China, in1988. She obtained her PhDin Food Science from ChinaAgricultural University in 2015working with the structures andnutrition of ferritin, especially theroles of iron (2010–2015). In 2015,she joined the Capital Medical Uni-versity to work on drug delivery inthe brain (2015–2019). In 2019,she moved to China AgriculturalUniversity to work on the self-assembly properties of protein andtheir potential applications in drugdelivery and bioimaging.Xiaorong ZhangXiaorong Zhang received herMaster’s degree in Food Engi-neering from China AgriculturalUniversity in 2018. Currently,she is a PhD student underthe supervision of ProfessorGuanghua Zhao in the Collegeof Food Science and NutritionalEngineering, China AgriculturalUniversity. Her recent researchfocuses on the design, con-struction and application ofprotein self-assemblies.Received 5th November 2020DOI: 10.1039/d0cs01349hrsc.li/chem-soc-revThis journal is The Royal Society of Chemistry 2021 Chem. Soc. Rev.Chem Soc RevREVIEW ARTICLEPublished on 15 February 2021. Downloaded by University of Science and Technology of China on 3/9/2021 3:14:48 PM. View Article OnlineView Journal

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