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甲型疱疹病毒主要被膜蛋白VP22:其在病毒生命周期中的精确功能

Alphaherpesvirus Major Tegument Protein VP22: Its Precise Function in the Viral Life Cycle.

作者信息

Wu Liping, Cheng Anchun, Wang Mingshu, Jia Renyong, Yang Qiao, Wu Ying, Zhu Dekang, Zhao Xinxin, Chen Shun, Liu Mafeng, Zhang Shaqiu, Ou Xuming, Mao Sai, Gao Qun, Sun Di, Wen Xinjian, Liu Yunya, Yu Yanling, Zhang Ling, Tian Bin, Pan Leichang, Chen Xiaoyue

机构信息

Institute of Preventive Veterinary Medicine, Sichuan Agricultural University, Chengdu, China.

Key Laboratory of Animal Disease and Human Health of Sichuan Province, Sichuan Agricultural University, Chengdu, China.

出版信息

Front Microbiol. 2020 Aug 7;11:1908. doi: 10.3389/fmicb.2020.01908. eCollection 2020.

Abstract

Alphaherpesviruses are zoonotic pathogens that can cause a variety of diseases in humans and animals and severely damage health. Alphaherpesvirus infection is a slow and orderly process that can lie dormant for the lifetime of the host but may be reactivated when the immune system is compromised. All alphaherpesviruses feature a protein layer called the tegument that lies between the capsid and the envelope. Virus protein (VP) 22 is one of the most highly expressed tegument proteins; there are more than 2,000 copies of this protein in each viral particle. VP22 can interact with viral proteins, cellular proteins, and chromatin, and these interactions play important roles. This review summarizes the latest literature and discusses the roles of VP22 in viral gene transcription, protein synthesis, virion assembly, and viral cell-to-cell spread with the purpose of enhancing understanding of the life cycle of herpesviruses and other pathogens in host cells. The molecular interaction information herein provides important reference data.

摘要

甲型疱疹病毒是人畜共患病原体,可在人和动物中引起多种疾病并严重损害健康。甲型疱疹病毒感染是一个缓慢且有序的过程,可在宿主的一生中处于潜伏状态,但在免疫系统受损时可能会重新激活。所有甲型疱疹病毒都有一层称为内膜的蛋白质层,位于衣壳和包膜之间。病毒蛋白(VP)22是内膜中表达量最高的蛋白质之一;每个病毒颗粒中该蛋白的拷贝数超过2000个。VP22可与病毒蛋白、细胞蛋白和染色质相互作用,这些相互作用发挥着重要作用。本综述总结了最新文献,并讨论了VP22在病毒基因转录、蛋白质合成、病毒体组装以及病毒细胞间传播中的作用,旨在增进对疱疹病毒和其他病原体在宿主细胞中生命周期的理解。本文中的分子相互作用信息提供了重要的参考数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb59/7427429/c44a8dafc9f3/fmicb-11-01908-g001.jpg

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