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利用病毒衣壳的物理化学性质设计酶限域纳米隔室。

Harnessing physicochemical properties of virus capsids for designing enzyme confined nanocompartments.

机构信息

Department of Chemistry and Biochemistry, California State University, Fresno, 2555 E. San Ramon Ave., Fresno, CA 93740, USA.

Department of Chemistry and Biochemistry, California State University, Fresno, 2555 E. San Ramon Ave., Fresno, CA 93740, USA.

出版信息

Curr Opin Virol. 2022 Feb;52:250-257. doi: 10.1016/j.coviro.2021.12.012. Epub 2021 Dec 30.

Abstract

Viruses have drawn significant scientific interest from a wide variety of disciplines beyond virology because of their elegant architectures and delicately balanced activities. A virus-like particle (VLP), a noninfectious protein cage derived from viruses or other cage-forming proteins, has been exploited as a nano-scale platform for bioinspired engineering and synthetic manipulation with a range of applications. Encapsulation of functional proteins, especially enzymes, is an emerging use of VLPs that is promising not only for developing efficient and robust catalytic materials, but also for providing fundamental insights into the effects of enzyme compartmentalization commonly observed in cells. This review highlights recent advances in employing VLPs as a container for confining enzymes. To accomplish larger and more controlled enzyme loading, various different enzyme encapsulation strategies have been developed; many of these strategies are inspired from assembly and genome loading mechanisms of viral capsids. Characterization of VLPs' physicochemical properties, such as porosity, could lead to rational manipulation and a better understanding of the catalytic behavior of the materials.

摘要

病毒因其优雅的结构和微妙平衡的活动,引起了病毒学以外的众多学科的浓厚科学兴趣。病毒样颗粒(VLP)是一种源自病毒或其他形成衣壳蛋白的无感染性蛋白衣壳,已被用作生物启发工程和合成操作的纳米级平台,具有广泛的应用。功能蛋白,特别是酶的包封是 VLP 的一个新兴用途,这不仅有望开发高效、稳健的催化材料,而且还为深入了解细胞中常见的酶分隔化效应提供了基础。本综述重点介绍了将 VLP 用作包封酶的容器的最新进展。为了实现更大和更可控的酶加载,已经开发了各种不同的酶包封策略;其中许多策略受到病毒衣壳的组装和基因组加载机制的启发。VLPs 的物理化学性质(如孔隙率)的表征,可以导致对材料的催化行为进行合理的操作和更好的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e9f/8939255/f747038d12fe/nihms-1788488-f0001.jpg

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