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伪狂犬病病毒的糖蛋白M和N形成二硫键连接的复合物。

Glycoproteins M and N of pseudorabies virus form a disulfide-linked complex.

作者信息

Jöns A, Dijkstra J M, Mettenleiter T C

机构信息

Institute of Molecular and Cellular Virology, Friedrich-Loeffler-Institutes, Federal Research Centre for Virus Diseases of Animals, Insel Riems, Germany.

出版信息

J Virol. 1998 Jan;72(1):550-7. doi: 10.1128/JVI.72.1.550-557.1998.

Abstract

Genes homologous to the herpes simplex virus UL49.5 open reading frame are conserved throughout the Herpesviridae. In the alphaherpesvirus pseudorabies virus (PrV), the UL49.5 product is an O-glycosylated structural protein of the viral envelope, glycoprotein N (gN) (A. Jöns, H. Granzow, R. Kuchling, and T. C. Mettenleiter, J. Virol. 70:1237-1241, 1996). For functional characterization of gN, a gN-negative PrV mutant, PrV-gNbeta, and the corresponding rescuant, PrV-gNbetaR, were constructed, gN-negative PrV was able to productively replicate on noncomplementing cells, and one-step growth in cell culture was only slightly reduced compared to that of wild-type PrV. However, penetration was significantly delayed. In indirect immunofluorescence assays with rabbit serum directed against baculovirus-expressed gN, specific staining of wild-type PrV-infected cells occurred only after permeabilization of cells, whereas live cells failed to react with the antiserum. This indicates the lack of surface accessibility of gN in the plasma membrane of a PrV-infected cell. Western blot analyses and radioimmunoprecipitation experiments under reducing and nonreducing conditions led to the discovery of a heteromeric complex composed of gM and gN. The complex was stable in the absence of 2-mercaptoethanol but dissociated after the addition of the reducing agent, indicating that the partners are linked by disulfide bonds. Finally, gN was absent from gM-negative PrV virions, whereas gM was readily detected in virions in the absence of gN. Thus, gM appears to be required for virion localization of gN.

摘要

与单纯疱疹病毒UL49.5开放阅读框同源的基因在整个疱疹病毒科中都是保守的。在甲型疱疹病毒伪狂犬病病毒(PrV)中,UL49.5产物是病毒包膜的一种O-糖基化结构蛋白,即糖蛋白N(gN)(A. 约恩斯、H. 格兰佐、R. 库赫林和T. C. 梅滕莱特,《病毒学杂志》70:1237 - 1241,1996年)。为了对gN进行功能表征,构建了一个gN阴性的PrV突变体PrV - gNβ以及相应的拯救病毒PrV - gNβR,gN阴性的PrV能够在非互补细胞上高效复制,与野生型PrV相比,其在细胞培养中的一步生长仅略有降低。然而,其穿透过程明显延迟。在用针对杆状病毒表达的gN的兔血清进行的间接免疫荧光试验中,野生型PrV感染细胞的特异性染色仅在细胞通透后出现,而活细胞不与抗血清反应。这表明PrV感染细胞的质膜中gN缺乏表面可及性。在还原和非还原条件下进行的蛋白质印迹分析和放射免疫沉淀实验发现了一种由gM和gN组成的异源复合物。该复合物在没有2 - 巯基乙醇的情况下是稳定的,但在加入还原剂后会解离,这表明两者通过二硫键相连。最后,gM阴性的PrV病毒粒子中不存在gN,而在没有gN的情况下,病毒粒子中很容易检测到gM。因此,gM似乎是gN在病毒粒子中定位所必需的。

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