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牛疱疹病毒1型VP8的磷酸化在病毒DNA包装中起作用,对其细胞质定位和最佳病毒体整合至关重要。

Phosphorylation of Bovine Herpesvirus 1 VP8 Plays a Role in Viral DNA Encapsidation and Is Essential for Its Cytoplasmic Localization and Optimal Virion Incorporation.

作者信息

Zhang Kuan, Brownlie Robert, Snider Marlene, van Drunen Littel-van den Hurk Sylvia

机构信息

VIDO-InterVac, University of Saskatchewan, Saskatoon, SK, Canada.

Vaccinology and Immunotherapeutics, University of Saskatchewan, Saskatoon, SK, Canada.

出版信息

J Virol. 2016 Apr 14;90(9):4427-4440. doi: 10.1128/JVI.00219-16. Print 2016 May.

Abstract

UNLABELLED

VP8 is a major tegument protein of bovine herpesvirus 1 (BoHV-1) and is essential for viral replication in cattle. The protein undergoes phosphorylation after transcription through cellular casein kinase 2 (CK2) and a viral kinase, US3. In this study, a virus containing a mutated VP8 protein that is not phosphorylated by CK2 and US3 (BoHV-1-YmVP8) was constructed by homologous recombination in mammalian cells. When BoHV-1-YmVP8-infected cells were observed by transmission electron microscopy, blocking phosphorylation of VP8 was found to impair viral DNA encapsidation, resulting in release of incomplete viral particles to the extracellular environment. Consequently, less infectious virus was produced by the mutant virus than by wild-type (WT) virus. A comparison of mutant and WT VP8 by confocal microscopy revealed that mutant VP8 is nuclear throughout infection while WT VP8 is nuclear early during infection and is associated with the Golgi apparatus at later stages. This, together with the observation that mutant VP8 is present in virions, albeit in smaller amounts, suggests that the incorporation of VP8 may occur at two stages. The first takes place without the need for phosphorylation and before or during nuclear egress of capsids, whereas the second occurs in the Golgi apparatus and requires phosphorylation of VP8. The results indicate that phosphorylated VP8 plays a role in viral DNA encapsidation and in the secondary virion incorporation of VP8. To perform these functions, the cellular localization of VP8 is adjusted based on the phosphorylation status.

IMPORTANCE

In this study, phosphorylation of VP8 was shown to have a function in BoHV-1 replication. A virus containing a mutated VP8 protein that is not phosphorylated by CK2 and US3 (BoHV-1-YmVP8) produced smaller numbers of infectious virions than wild-type (WT) virus. The maturation and egress of WT and mutant BoHV-1 were studied, showing a process similar to that reported for other alphaherpesviruses. Interestingly, lack of phosphorylation of VP8 by CK2 and US3 resulted in reduced incorporation of viral DNA into capsids during mutant BoHV-1 infection, as well as lower numbers of extracellular virions. Furthermore, mutant VP8 remained nuclear throughout infection, in contrast to WT VP8, which is nuclear at early stages and Golgi apparatus associated late during infection. This correlates with smaller amounts of mutant VP8 in virions and suggests for the first time that VP8 may be assembled into the virions at two stages, with the latter dependent on phosphorylation.

摘要

未标记

VP8是牛疱疹病毒1型(BoHV-1)的一种主要被膜蛋白,对病毒在牛体内的复制至关重要。该蛋白在转录后通过细胞酪蛋白激酶2(CK2)和一种病毒激酶US3进行磷酸化。在本研究中,通过在哺乳动物细胞中进行同源重组构建了一种含有未被CK2和US3磷酸化的突变型VP8蛋白的病毒(BoHV-1-YmVP8)。当通过透射电子显微镜观察感染BoHV-1-YmVP8的细胞时,发现阻断VP8的磷酸化会损害病毒DNA的包装,导致不完整的病毒颗粒释放到细胞外环境中。因此,突变病毒产生的感染性病毒比野生型(WT)病毒少。通过共聚焦显微镜对突变型和野生型VP8进行比较发现,在整个感染过程中突变型VP8都位于细胞核内,而野生型VP8在感染早期位于细胞核内,后期与高尔基体相关。这一点,再加上观察到突变型VP8存在于病毒粒子中,尽管数量较少,表明VP8的掺入可能发生在两个阶段。第一个阶段在衣壳核输出之前或期间发生,不需要磷酸化,而第二个阶段发生在高尔基体中,需要VP8的磷酸化。结果表明,磷酸化的VP8在病毒DNA包装和VP8在次级病毒粒子中的掺入中发挥作用。为了执行这些功能,VP8的细胞定位根据磷酸化状态进行调整。

重要性

在本研究中,VP8的磷酸化在BoHV-1复制中显示出具有功能。一种含有未被CK2和US3磷酸化的突变型VP8蛋白的病毒(BoHV-1-YmVP8)产生的感染性病毒粒子数量比野生型(WT)病毒少。对野生型和突变型BoHV-1的成熟和释放进行了研究,显示出与其他α疱疹病毒报道的过程相似。有趣的是,在突变型BoHV-1感染期间,CK2和US3对VP8的磷酸化缺乏导致病毒DNA掺入衣壳的减少,以及细胞外病毒粒子数量的降低。此外,与野生型VP8不同,突变型VP8在整个感染过程中都保留在细胞核内,野生型VP8在早期位于细胞核内,在感染后期与高尔基体相关。这与病毒粒子中突变型VP8数量较少相关,并首次表明VP8可能在两个阶段组装到病毒粒子中,后者依赖于磷酸化。

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