Potel Corinne, Elliott Gillian
Virus Assembly Group, Marie Curie Research Institute, Oxted, Surrey, United Kingdom.
J Virol. 2005 Nov;79(22):14057-68. doi: 10.1128/JVI.79.22.14057-14068.2005.
Herpes simplex virus VP22 is a major tegument protein of unknown function. Very recently, we reported that the predominant effect of deleting the VP22 gene was on the expression, localization, and virion incorporation of ICP0. In addition, the Delta22 virus replicated poorly in epithelial MDBK cells. We have also previously shown that VP22 interacts with the tegument protein VP16 and the cellular microtubule network. While the majority of VP22 in infected cells is highly phosphorylated, the nonphosphorylated form of VP22 is the predominant species in the virion, suggesting a differential requirement for phosphorylation through virus replication. Hence, to study the significance of VP22 phosphorylation, we have now constructed two recombinant viruses expressing green fluorescent protein-VP22 (G22) in which the previously identified serine phosphorylation sites have been mutated either to alanine to abolish the phosphorylation status of VP22 (G22P-) or to glutamic acid to mimic permanent phosphorylation (G22P+). Localization studies indicated that the G22P- protein associated tightly with microtubules in some infected cells, suggesting that VP22 phosphorylation may control its interaction with the microtubule network. By contrast, VP22 phosphorylation had no effect on its ability to interact with VP16 and, importantly, had no effect on the relative packaging of VP22. Intriguingly, virion packaging of ICP0 was reduced in the G22P+ virus while ICP0 expression was reduced in the G22P- virus, suggesting that these two ICP0 defects, previously observed in the Delta22 virus, were attributable to different forms of VP22. Furthermore, the Delta22 virus replication defect in MDBK cells correlated with the expression of constitutively charged VP22 in the G22P+ virus. Taken together, these results suggest an important role for VP22 phosphorylation in its relationship with ICP0.
单纯疱疹病毒VP22是一种功能未知的主要被膜蛋白。最近,我们报道了删除VP22基因的主要影响在于ICP0的表达、定位和病毒体整合。此外,Delta22病毒在上皮MDBK细胞中复制不佳。我们之前还表明VP22与被膜蛋白VP16和细胞微管网络相互作用。虽然感染细胞中大多数VP22高度磷酸化,但VP22的非磷酸化形式是病毒体中的主要形式,这表明在病毒复制过程中对磷酸化有不同的需求。因此,为了研究VP22磷酸化的意义,我们现在构建了两种表达绿色荧光蛋白-VP22(G22)的重组病毒,其中先前确定的丝氨酸磷酸化位点已分别突变为丙氨酸以消除VP22的磷酸化状态(G22P-)或突变为谷氨酸以模拟永久磷酸化(G22P+)。定位研究表明,G22P-蛋白在一些感染细胞中与微管紧密相关,这表明VP22磷酸化可能控制其与微管网络的相互作用。相比之下,VP22磷酸化对其与VP16相互作用的能力没有影响,重要的是,对VP22的相对包装也没有影响。有趣的是,G22P+病毒中ICP0的病毒体包装减少,而G22P-病毒中ICP0的表达减少,这表明先前在Delta22病毒中观察到的这两种ICP0缺陷归因于不同形式的VP22。此外,Delta22病毒在MDBK细胞中的复制缺陷与G22P+病毒中持续带电的VP22的表达相关。综上所述,这些结果表明VP22磷酸化在其与ICP0的关系中起重要作用。