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通过双半胱氨酸取代实现从多形态到同源自组装的猴病毒 40 样病毒粒子的转变。

Switch from Polymorphic to Homogenous Self-Assembly of Virus-Like Particles of Simian Virus 40 through Double-Cysteine Substitution.

机构信息

Guangzhou Women and Children's Medical Center, Guangzhou Medical University, Guangzhou, 510623, P. R. China.

State Key Laboratory of Virology, Wuhan Institute of Virology, Center for Biosafety Mega-Science, Chinese Academy of Sciences (CAS), Wuhan, 430071, P. R. China.

出版信息

Small. 2020 Nov;16(45):e2004484. doi: 10.1002/smll.202004484. Epub 2020 Oct 15.

DOI:10.1002/smll.202004484
PMID:33063476
Abstract

Self-assembled virus-like particles (VLPs) hold great potential as natural nanomaterials for applications in many fields. For such purposes, monodisperse size distribution is a desirable property. However, the VLPs of simian virus 40 (SV40), a representative VLP platform, are characterized by polymorphism. In an attempt to eliminate the polymorphism, 15 mutants of the VLP subunit (VP1) are constructed through the substitution of double cysteines at the VP1 pentamer interfaces, generating a group of VLPs with altered size distributions. One of the mutants, SS2 (L102C/P300C), specifically forms homogenous T = 1-like tiny VLPs of 24 ± 3 nm in diameter. Moreover, the stability of the SS2 VLPs is markedly enhanced compared with that of wild-type VLPs. The homogeneous self-assembly and stability enhancement of SS2 VLPs can be attributed to the new disulfide bonds contributed by Cys102 and Cys300, which are identified by mass spectrometry and explored by molecular dynamics simulations. Endocytosis inhibition assays indicate that SS2 VLPs, like the polymorphic wild-type VLPs, preserve the multipathway feature of cellular uptake. SS2 VLPs may serve as an evolved version of SV40 VLPs in future studies and applications. The findings of this work would be useful for the design and fabrication of VLP-based materials and devices.

摘要

自组装病毒样颗粒(VLPs)作为天然纳米材料,在许多领域具有巨大的应用潜力。对于此类应用,单分散的粒径分布是理想的特性。然而,作为代表性 VLP 平台的猴病毒 40(SV40)的 VLPs 具有多态性。为了消除多态性,通过在 VP1 五聚体界面处取代两个半胱氨酸,构建了 15 种 VP1 亚单位(VP1)的突变体,从而产生了一组具有改变的粒径分布的 VLPs。其中一个突变体 SS2(L102C/P300C),特别形成了直径为 24 ± 3nm 的同质 T=1 样微小 VLPs。此外,与野生型 VLPs 相比,SS2 VLPs 的稳定性明显增强。SS2 VLPs 的同质自组装和稳定性增强归因于 Cys102 和 Cys300 形成的新二硫键,这通过质谱和分子动力学模拟进行了鉴定和探索。内吞作用抑制实验表明,SS2 VLPs 与多态性野生型 VLPs 一样,保留了细胞摄取的多途径特征。在未来的研究和应用中,SS2 VLPs 可能成为 SV40 VLPs 的一种进化版本。这项工作的结果将有助于基于 VLP 的材料和器件的设计和制造。

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