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牛疱疹病毒1型糖蛋白gI对伪狂犬病病毒糖蛋白gII缺失突变体的稳定拯救

Stable rescue of a glycoprotein gII deletion mutant of pseudorabies virus by glycoprotein gI of bovine herpesvirus 1.

作者信息

Kopp A, Mettenleiter T C

机构信息

Federal Research Center for Virus Diseases of Animals, Tübingen, Germany.

出版信息

J Virol. 1992 May;66(5):2754-62. doi: 10.1128/JVI.66.5.2754-2762.1992.

Abstract

Glycoproteins homologous to glycoprotein B (gB) of herpes simplex virus constitute the most highly conserved group of herpesvirus glycoproteins. This strong conservation of amino acid sequences might be indicative of a common functional role. Indeed, gB homologs have been implicated in the processes of viral entry and virus-mediated cell-cell fusion. Recently, we showed that pseudorabies virus (PrV) lacking the essential gB-homologous glycoprotein gII could be propagated on a cell line expressing the gB homolog of bovine herpesvirus 1, gI(BHV-1), leading to a phenotypic complementation of the gII defect (I. Rauh, F. Weiland, F. Fehler, G. Keil, and T.C. Mettenleiter, J. Virol. 65:621-631, 1991). However, this pseudotypic virus could still replicate only on complementing cell lines, thereby limiting experimental approaches to analyze the effects of the gB exchange in detail. We describe here the construction and isolation of a PrV recombinant, 9112C2, that lacks gII(PrV) but instead stably carries and expresses the gene encoding gI(BHV-1). The recombinant is able to replicate on noncomplementing cells with growth kinetics and final titers similar to those of its gII-positive wild-type PrV parent. Neutralization tests and immunoprecipitation analyses demonstrated incorporation of gI(BHV-1) into 9112C2 virions with concomitant absence of gII(PrV). Analysis of in vitro host ranges of wild-type PrV, BHV-1, and recombinant 9112C2 showed that in cells of pig, rabbit, canine, monkey, or human origin, the plating efficiency of 9112C2 was similar to that of its PrV parent. Exchange of gII(PrV) for gI(BHV-1) in recombinant 9112C2 or by phenotypic complementation of gII- PrV propagated on gI(BHV-1)-expressing cell lines resulted in penetration kinetics intermediate between those of wild-type PrV and BHV-1. In conclusion, we report the first isolation of a viral recombinant in which a lethal glycoprotein mutation has been rescued by a homologous glycoprotein of a different herpesvirus. Our data show that in gII- PrV, gI(BHV-1) in vitro fully complements the lethal defect associated with lack of gII(PrV). These results conclusively demonstrate that gI(BHV-1) in a PrV background can execute all essential functions normally provided by gII(PrV). They also indicate that the origin of gB-homologous glycoproteins influences the penetration kinetics of herpesviruses.

摘要

与单纯疱疹病毒糖蛋白B(gB)同源的糖蛋白构成了疱疹病毒糖蛋白中保守性最高的一组。氨基酸序列的这种高度保守可能表明其具有共同的功能作用。实际上,gB同源物已被证明与病毒进入和病毒介导的细胞间融合过程有关。最近,我们发现缺乏必需的gB同源糖蛋白gII的伪狂犬病病毒(PrV)能够在表达牛疱疹病毒1的gB同源物gI(BHV-1)的细胞系上增殖,从而导致gII缺陷的表型互补(I. Rauh、F. Weiland、F. Fehler、G. Keil和T.C. Mettenleiter,《病毒学杂志》65:621 - 631,1991年)。然而,这种假型病毒仍然只能在互补细胞系上复制,从而限制了详细分析gB交换效应的实验方法。我们在此描述了一种PrV重组体9112C2的构建和分离,该重组体缺乏gII(PrV),但稳定携带并表达编码gI(BHV-1)的基因。该重组体能够在非互补细胞上复制,其生长动力学和最终滴度与gII阳性的野生型PrV亲本相似。中和试验和免疫沉淀分析表明gI(BHV-1)被整合到9112C2病毒粒子中,同时不存在gII(PrV)。对野生型PrV、BHV-1和重组体9112C2的体外宿主范围分析表明,在猪、兔、犬、猴或人源细胞中,9112C2的平板效率与其PrV亲本相似。在重组体9112C2中用gI(BHV-1)替换gII(PrV),或者通过在表达gI(BHV-1)的细胞系上对gII缺陷型PrV进行表型互补,导致其穿透动力学介于野生型PrV和BHV-1之间。总之,我们报道了首次分离出一种病毒重组体,其中致死性糖蛋白突变已被另一种疱疹病毒的同源糖蛋白挽救。我们的数据表明,在gII缺陷型PrV中,gI(BHV-1)在体外完全互补了与缺乏gII(PrV)相关的致死缺陷。这些结果确凿地证明,在PrV背景下的gI(BHV-1)能够执行通常由gII(PrV)提供的所有基本功能。它们还表明gB同源糖蛋白的来源会影响疱疹病毒的穿透动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2eb7/241031/1b5a6a2f3b82/jvirol00037-0169-a.jpg

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