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具有明确定义的超分子蛋白质纳米结构的人工蛋白质组装体。

Artificial protein assemblies with well-defined supramolecular protein nanostructures.

机构信息

Department of Chemistry, Korea Advanced Institute of Science and Technology, Daejeon 34141, Korea.

出版信息

Biochem Soc Trans. 2021 Dec 17;49(6):2821-2830. doi: 10.1042/BST20210808.

Abstract

Nature uses a wide range of well-defined biomolecular assemblies in diverse cellular processes, where proteins are major building blocks for these supramolecular assemblies. Inspired by their natural counterparts, artificial protein-based assemblies have attracted strong interest as new bio-nanostructures, and strategies to construct ordered protein assemblies have been rapidly expanding. In this review, we provide an overview of very recent studies in the field of artificial protein assemblies, with the particular aim of introducing major assembly methods and unique features of these assemblies. Computational de novo designs were used to build various assemblies with artificial protein building blocks, which are unrelated to natural proteins. Small chemical ligands and metal ions have also been extensively used for strong and bio-orthogonal protein linking. Here, in addition to protein assemblies with well-defined sizes, protein oligomeric and array structures with rather undefined sizes (but with definite repeat protein assembly units) also will be discussed in the context of well-defined protein nanostructures. Lastly, we will introduce multiple examples showing how protein assemblies can be effectively used in various fields such as therapeutics and vaccine development. We believe that structures and functions of artificial protein assemblies will be continuously evolved, particularly according to specific application goals.

摘要

自然界在各种细胞过程中使用了广泛的定义明确的生物分子组装体,其中蛋白质是这些超分子组装体的主要构建块。受其天然对应物的启发,人工基于蛋白质的组装体作为新型生物纳米结构引起了强烈的兴趣,并且构建有序蛋白质组装体的策略也在迅速扩展。在这篇综述中,我们提供了人工蛋白质组装领域的最新研究概述,特别是旨在介绍这些组装体的主要组装方法和独特特征。使用计算从头设计来构建具有人工蛋白质构建块的各种组装体,这些构建块与天然蛋白质无关。小分子化学配体和金属离子也被广泛用于强和生物正交的蛋白质连接。在这里,除了具有明确尺寸的蛋白质组装体外,还将讨论具有相当不定尺寸(但具有明确重复蛋白质组装单元)的蛋白质寡聚体和阵列结构,作为明确的蛋白质纳米结构的背景。最后,我们将介绍多个示例,展示蛋白质组装体如何在治疗和疫苗开发等各个领域中有效应用。我们相信,人工蛋白质组装体的结构和功能将不断发展,特别是根据特定的应用目标。

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