Section of Virology, Faculty of Medicine, Imperial College London, London, United Kingdom.
J Virol. 2012 Dec;86(23):12971-82. doi: 10.1128/JVI.01913-12. Epub 2012 Sep 19.
Assembly of the herpesvirus tegument is poorly understood but is believed to involve interactions between outer tegument proteins and the cytoplasmic domains of envelope glycoproteins. Here, we present the detailed characterization of a multicomponent glycoprotein-tegument complex found in herpes simplex virus 1 (HSV-1)-infected cells. We demonstrate that the tegument protein VP22 bridges a complex between glycoprotein E (gE) and glycoprotein M (gM). Glycoprotein I (gI), the known binding partner of gE, is also recruited into this gE-VP22-gM complex but is not required for its formation. Exclusion of the glycoproteins gB and gD and VP22's major binding partner VP16 demonstrates that recruitment of virion components into this complex is highly selective. The immediate-early protein ICP0, which requires VP22 for packaging into the virion, is also assembled into this gE-VP22-gM-gI complex in a VP22-dependent fashion. Although subcomplexes containing VP22 and ICP0 can be formed when either gE or gM are absent, optimal complex formation requires both glycoproteins. Furthermore, and in line with complex formation, neither of these glycoproteins is individually required for VP22 or ICP0 packaging into the virion, but deletion of gE and gM greatly reduces assembly of both VP22 and ICP0. Double deletion of gE and gM also results in small plaque size, reduced virus yield, and defective secondary envelopment, similar to the phenotype previously shown for pseudorabies virus. Hence, we suggest that optimal gE-VP22-gM-gI-ICP0 complex formation correlates with efficient virus morphogenesis and spread. These data give novel insights into the poorly understood process of tegument acquisition.
疱疹病毒外壳的组装过程还不太清楚,但据信涉及外壳蛋白与包膜糖蛋白的细胞质结构域之间的相互作用。在这里,我们介绍了在单纯疱疹病毒 1(HSV-1)感染细胞中发现的一种多组分糖蛋白-外壳复合物的详细特征。我们证明外壳蛋白 VP22 桥接了糖蛋白 E(gE)和糖蛋白 M(gM)之间的复合物。糖蛋白 I(gI),已知 gE 的结合伴侣,也被招募到这个 gE-VP22-gM 复合物中,但不是其形成所必需的。糖蛋白 gB 和 gD 以及 VP22 的主要结合伴侣 VP16 的排除表明,病毒成分被招募到这个复合物中是高度选择性的。需要 VP22 才能包装到病毒中的早期蛋白 ICP0,也以 VP22 依赖的方式组装到这个 gE-VP22-gM-gI 复合物中。虽然当 gE 或 gM 缺失时可以形成含有 VP22 的亚复合物,但最佳复合物的形成需要这两种糖蛋白。此外,与复合物形成一致的是,这两种糖蛋白都不需要单独包装到病毒中,但是缺失 gE 和 gM 会大大降低 VP22 和 ICP0 的组装。gE 和 gM 的双重缺失也会导致小斑块大小、病毒产量降低和二次包被缺陷,类似于以前在伪狂犬病病毒中显示的表型。因此,我们认为最佳的 gE-VP22-gM-gI-ICP0 复合物形成与有效的病毒形态发生和传播相关。这些数据为了解外壳获取这一理解甚少的过程提供了新的见解。