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伪狂犬病病毒包膜糖蛋白 E 和 M 与主要衣壳蛋白 UL49 之间的物理相互作用。

Physical interaction between envelope glycoproteins E and M of pseudorabies virus and the major tegument protein UL49.

作者信息

Fuchs Walter, Klupp Barbara G, Granzow Harald, Hengartner Christoph, Brack Alexandra, Mundt Alice, Enquist Lynn W, Mettenleiter Thomas C

机构信息

Institute of Molecular Biology, Friedrich-Loeffler-Institutes, Federal Research Centre for Virus Diseases of Animals, D-17498 Insel Riems, Germany.

出版信息

J Virol. 2002 Aug;76(16):8208-17. doi: 10.1128/jvi.76.16.8208-8217.2002.

Abstract

Envelope glycoprotein M (gM) and the complex formed by glycoproteins E (gE) and I (gI) are involved in the secondary envelopment of pseudorabies virus (PrV) particles in the cytoplasm of infected cells. In the absence of the gE-gI complex and gM, envelopment is blocked and capsids surrounded by tegument proteins accumulate in the cytoplasm (A. R. Brack, J. Dijkstra, H. Granzow, B. G. Klupp, and T. C. Mettenleiter, J. Virol. 73:5364-5372, 1999). Here we demonstrate by yeast two-hybrid analyses that the cytoplasmic domains of gE and gM specifically interact with the C-terminal part of the UL49 gene product of PrV, which represents a major tegument protein and which is homologous to VP22 of herpes simplex virus type 1. However, deletion of the UL49 gene from PrV had only minor effects on viral replication, and ultrastructural analyses of infected cells confirmed that virus maturation and egress, including secondary envelopment in the cytoplasm, were not detectably affected by the absence of UL49. Moreover, the UL49 gene product was shown to be dispensable for virion localization of gE and gM, and mutants lacking either gE or gM incorporated the UL49 protein efficiently into virus particles. In contrast, a PrV mutant with deletions of gE-gI and gM failed to incorporate the UL49 protein despite apparently unaltered intracytoplasmic UL49 expression. In summary, we describe specific interactions between herpesvirus envelope and tegument proteins which may play a role in secondary envelopment during herpesvirus virion maturation.

摘要

包膜糖蛋白M(gM)以及由糖蛋白E(gE)和I(gI)形成的复合物参与伪狂犬病病毒(PrV)粒子在受感染细胞胞质中的二次包膜过程。在缺乏gE - gI复合物和gM的情况下,包膜过程受阻,被皮层蛋白包围的衣壳在胞质中积累(A. R. Brack、J. Dijkstra、H. Granzow、B. G. Klupp和T. C. Mettenleiter,《病毒学杂志》73:5364 - 5372,1999年)。在此,我们通过酵母双杂交分析证明,gE和gM的胞质结构域与PrV的UL49基因产物的C末端部分特异性相互作用,该产物是一种主要的皮层蛋白,与单纯疱疹病毒1型的VP22同源。然而,从PrV中缺失UL49基因对病毒复制只有轻微影响,对受感染细胞的超微结构分析证实,病毒成熟和释放,包括胞质中的二次包膜,并未因缺乏UL49而受到可检测到的影响。此外,已证明UL49基因产物对于gE和gM在病毒粒子中的定位是可有可无的,缺乏gE或gM的突变体能够有效地将UL49蛋白整合到病毒粒子中。相比之下,缺失gE - gI和gM的PrV突变体尽管胞质内UL49表达明显未改变,但仍无法整合UL49蛋白。总之,我们描述了疱疹病毒包膜蛋白和皮层蛋白之间的特异性相互作用,这可能在疱疹病毒粒子成熟过程中的二次包膜中发挥作用。

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