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结构纳米技术:三维冷冻电镜及其在体外催化纳米平台开发中的应用。

Structural nanotechnology: three-dimensional cryo-EM and its use in the development of nanoplatforms for in vitro catalysis.

机构信息

Department of Biomolecular Nanotechnology, MESA+ Institute for Nanotechnology, University of Twente, 7500 AE Enschede, The Netherlands.

出版信息

Nanoscale. 2019 Mar 7;11(10):4130-4146. doi: 10.1039/c8nr09204d.

Abstract

The organization of enzymes into different subcellular compartments is essential for correct cell function. Protein-based cages are a relatively recently discovered subclass of structurally dynamic cellular compartments that can be mimicked in the laboratory to encapsulate enzymes. These synthetic structures can then be used to improve our understanding of natural protein-based cages, or as nanoreactors in industrial catalysis, metabolic engineering, and medicine. Since the function of natural protein-based cages is related to their three-dimensional structure, it is important to determine this at the highest possible resolution if viable nanoreactors are to be engineered. Cryo-electron microscopy (cryo-EM) is ideal for undertaking such analyses within a feasible time frame and at near-native conditions. This review describes how three-dimensional cryo-EM is used in this field and discusses its advantages. An overview is also given of the nanoreactors produced so far, their structure, function, and applications.

摘要

酶在不同亚细胞区室中的组织对于正确的细胞功能至关重要。基于蛋白质的笼状结构是最近发现的一类结构动态细胞区室,可在实验室中模拟以包封酶。这些合成结构可用于提高我们对天然基于蛋白质的笼状结构的理解,或在工业催化、代谢工程和医学中用作纳米反应器。由于天然基于蛋白质的笼状结构的功能与其三维结构有关,如果要设计可行的纳米反应器,则必须尽可能高的分辨率确定这一点。冷冻电子显微镜(cryo-EM)非常适合在可行的时间范围内并在接近天然的条件下进行此类分析。这篇综述描述了如何在该领域使用三维冷冻电子显微镜,并讨论了其优势。还概述了迄今为止生产的纳米反应器,包括它们的结构、功能和应用。

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