Characterization of virus-like particles assembled by co-expression of BmCPV capsid shell protein and large protrusion protein

衣壳 生物 多面体 类病毒颗粒 病毒 先天免疫系统 中肠 病毒学 基因 细胞生物学 分子生物学 遗传学 重组DNA 夜蛾 免疫系统 幼虫 植物
作者
Feifei Ren,Jiming Yan,Dimitriοs Kontogiannatos,Xiong Wang,Jingyang Li,Luc Swevers,Jingchen Sun
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:209: 1656-1664 被引量:5
标识
DOI:10.1016/j.ijbiomac.2022.04.097
摘要

Bombyx mori cytoplasmic polyhedrosis virus (BmCPV) is a typical single-layer capsid dsRNA virus belonging to the Reoviridae family of the Cypovirus genus. Previous studies have shown that the BmCPV major capsid shell protein (CSP) has the ability to self-assemble into virus-like particles (VLPs), and cryo-electron microscopy of the BmCPV virions has revealed a tight mutual binding region between CSP and another capsid protein known as the Large Protrusion Protein (LPP), which further stabilizes the capsid shell. In this study, the multi-gene baculovirus expression system, Ac-MultiBac, was used to produce both solely CSP-based and CSP-LPP co-assembled VLPs. Transmission electron microscopy (TEM) results showed that addition of LPP did not affect the assembly of VLPs resulting in almost identical structure in both cases. However, ex vivo administration of VLPs to silkworm midgut tissue showed that CSP-based VLPs did not induce a significant transcriptional response in the innate immunity and RNAi gene cascades, compared to the co-assembled CSP-LPP based VLPs and the natural BmCPV virions isolated from polyhedra. The experimental results indicate that CSP and LPP attach tightly ("Plug and Display" model with CSP acting as "catcher" and LPP as "tag") to form VLPs that have a structure similar to that of the native CPV virions. Moreover, our results showed that the formation of VLPs with the two BmCPV capsid proteins is feasible, which can form the basis for the production of BmCPV-based VLPs as a new type of biological material to display exogenous proteins.
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