University of Chinese Academy of Sciences , Beijing 100049 , P. R. China.
ACS Appl Mater Interfaces. 2018 Aug 1;10(30):25135-25145. doi: 10.1021/acsami.8b07611. Epub 2018 Jul 23.
Viruses with filamentous morphologies, such as tobacco mosaic virus (TMV) and M13 bacteriophage, have long been studied as multivalent nanoscaffolds for loading functional motifs. Structural assembly of the capsid proteins (CPs) of filamentous viruses often requires the presence of DNA or RNA molecules, which has limited their applications. Here, we describe a strategy for controllable assembly of flexible bio-nanotubes consisting of Escherichia coli expressed CP of baculovirus Helicoverpa armigera nucleopolyhedrovirus (HearNPV) in vitro. These protein-only nanotubes were studied as a new structural platform for high-density presentation of multiple active molecules on the exterior surface by direct fusion of the protein of interest to the N-terminus of HearNPV CP (HaCP). Structural characterization using cryoelectron microscopy demonstrated that the HaCP could assemble into two closely related but structurally distinct tube types, suggesting the tunable HaCP interaction network is the major contributor to the flexibility of HaCP nanotubes. Our flexible nanotubes could tolerate larger molecular modifications compared with TMV-based templates and could be used as promising candidates for versatile molecular loading applications.
具有丝状形态的病毒,如烟草花叶病毒(TMV)和 M13 噬菌体,长期以来一直被研究作为负载功能基序的多价纳米支架。丝状病毒衣壳蛋白(CP)的结构组装通常需要 DNA 或 RNA 分子的存在,这限制了它们的应用。在这里,我们描述了一种在体外可控组装由杆状病毒野蚕核型多角体病毒(HearNPV)表达的大肠杆菌 CP 组成的柔性生物纳米管的策略。这些仅由蛋白质组成的纳米管被研究作为一种新的结构平台,通过将感兴趣的蛋白质融合到 HearNPV CP(HaCP)的 N 末端,在其外表面高密度展示多种活性分子。使用冷冻电子显微镜进行的结构表征表明,HaCP 可以组装成两种密切相关但结构上不同的管类型,这表明可调 HaCP 相互作用网络是 HaCP 纳米管柔韧性的主要贡献者。与基于 TMV 的模板相比,我们的柔性纳米管能够耐受更大的分子修饰,并且可以作为多功能分子负载应用的有前途的候选物。