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研究非洲马瘟病毒 VP7 蛋白晶体颗粒对病毒复制和释放的作用。

Investigating the Role of African Horse Sickness Virus VP7 Protein Crystalline Particles on Virus Replication and Release.

机构信息

Department of Biochemistry, Genetics and Microbiology, University of Pretoria, Hatfield 0083, South Africa.

Deltamune (Pty) Ltd., 3 Bauhinia Street, Unit 34 Oxford Office Park, Highveld Techno Park, Centurion 0169, South Africa.

出版信息

Viruses. 2022 Oct 4;14(10):2193. doi: 10.3390/v14102193.

Abstract

African horse sickness is a deadly and highly infectious disease of equids, caused by African horse sickness virus (AHSV). AHSV is one of the most economically important members of the genus. AHSV is transmitted by the biting midge, , and therefore replicates in both insect and mammalian cell types. Structural protein VP7 is a highly conserved major core protein of orbiviruses. Unlike any other orbivirus VP7, AHSV VP7 is highly insoluble and forms flat hexagonal crystalline particles of unknown function in AHSV-infected cells and when expressed in mammalian or insect cells. To examine the role of AHSV VP7 in virus replication, a plasmid-based reverse genetics system was used to generate a recombinant AHSV that does not form crystalline particles. We characterised the role of VP7 crystalline particle formation in AHSV replication in vitro and found that soluble VP7 interacted with viral proteins VP2 and NS2 similarly to wild-type VP7 during infection. Interestingly, soluble VP7 was found to form uncharacteristic tubule-like structures in infected cells which were confirmed to be as a result of unique VP7-NS1 colocalisation. Furthermore, it was found that VP7 crystalline particles play a role in AHSV release and yield. This work provides insight into the role of VP7 aggregation in AHSV cellular pathogenesis and contributes toward the understanding of the possible effects of viral protein aggregation in other human virus-borne diseases.

摘要

非洲马瘟是一种致命的、高度传染性的马属动物疾病,由非洲马瘟病毒(AHSV)引起。AHSV 是属中最重要的经济成员之一。AHSV 通过吸血蠓传播,因此在昆虫和哺乳动物细胞类型中复制。结构蛋白 VP7 是环状病毒的高度保守的主要核心蛋白。与任何其他环状病毒 VP7 不同,AHSV VP7 高度不可溶,并且在 AHSV 感染细胞中和在哺乳动物或昆虫细胞中表达时形成未知功能的扁平六方晶状颗粒。为了研究 AHSV VP7 在病毒复制中的作用,使用基于质粒的反向遗传学系统生成了一种不形成晶状颗粒的重组 AHSV。我们研究了 VP7 晶状颗粒形成在 AHSV 体外复制中的作用,发现可溶性 VP7 在感染过程中与病毒蛋白 VP2 和 NS2 的相互作用与野生型 VP7 相似。有趣的是,在感染细胞中发现可溶性 VP7 形成了不典型的管状结构,这被证实是由于 VP7-NS1 的独特共定位。此外,还发现 VP7 晶状颗粒在 AHSV 的释放和产量中起作用。这项工作深入了解了 VP7 聚集在 AHSV 细胞发病机制中的作用,并有助于理解病毒蛋白聚集在其他人类病毒病中的可能影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b53/9608501/d057a4b2ac3a/viruses-14-02193-g001.jpg

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