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利用蜜蜂蛹组织进行残翅病毒感染

DWV Infection Using Honey Bee Pupal Tissue.

作者信息

Wu Yunfei, Yuan Xuye, Li Jing, Kadowaki Tatsuhiko

机构信息

Department of Biological Sciences, Xi'an Jiaotong-Liverpool University, Suzhou Dushu Lake Higher Education Town, Suzhou, China.

出版信息

Front Microbiol. 2021 Feb 10;12:631889. doi: 10.3389/fmicb.2021.631889. eCollection 2021.

Abstract

The deformed wing virus (DWV) has been best characterized among honey bee viruses; however, very little is known regarding the mechanisms of viral infection and replication due to the lack of immortalized honey bee cell lines. To solve this problem, we established an system using honey bee pupal tissue to reconstruct DWV binding and entry into the host cell, followed by translation of the RNA genome and polyprotein processing using RNA-dependent RNA polymerase (RdRP) as a marker. Using this system, the P-domain of the virion subunit VP1 was found to be essential for DWV infection, but not for binding and entry into the cell. DWV efficiently infected the head tissue derived from early but not late pupa, suggesting that undifferentiated cells are targeted for viral infection. Furthermore, we found that inhibitors of mammalian picornavirus 3C-protease, rupintrivir and quercetin suppressed RdRP synthesis, indicating that this system is also useful for screening a compound to control viral infection. Our system may help to understand the mechanism of DWV infection in host cells.

摘要

变形翼病毒(DWV)是蜜蜂病毒中特征最为明确的一种;然而,由于缺乏永生化的蜜蜂细胞系,关于病毒感染和复制机制的了解非常有限。为了解决这个问题,我们建立了一个系统,利用蜜蜂蛹组织来重建DWV与宿主细胞的结合和进入过程,随后以RNA依赖的RNA聚合酶(RdRP)为标记,对RNA基因组进行翻译和多聚蛋白加工。利用这个系统,发现病毒粒子亚基VP1的P结构域对DWV感染至关重要,但对其与细胞的结合和进入过程并非如此。DWV能有效感染早期而非晚期蛹的头部组织,这表明未分化细胞是病毒感染的目标。此外,我们发现哺乳动物微小核糖核酸病毒3C蛋白酶抑制剂鲁平替韦和槲皮素可抑制RdRP的合成,这表明该系统也可用于筛选控制病毒感染的化合物。我们的系统可能有助于理解DWV在宿主细胞中的感染机制。

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