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伪狂犬病病毒糖蛋白B羧基末端截短对感染性的影响。

Effects of truncation of the carboxy terminus of pseudorabies virus glycoprotein B on infectivity.

作者信息

Nixdorf R, Klupp B G, Karger A, Mettenleiter T 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. 2000 Aug;74(15):7137-45. doi: 10.1128/jvi.74.15.7137-7145.2000.

Abstract

Glycoproteins homologous to the type I membrane glycoprotein B (gB) of herpes simplex virus 1 (HSV-1) are the most highly conserved glycoproteins within the family Herpesviridae and are present in members of each herpesvirus subfamily. In the alphaherpesvirus pseudorabies virus (PrV), gB is required for entry into target cells and for direct viral cell-to-cell spread. These processes, though related, appear to be distinct, and thus it was interesting to analyze whether they require different functions of gB. To this end, we established cell lines stably expressing different carboxy-terminally truncated versions of PrV gB by deleting either (i) one predicted intracytoplasmic alpha-helical domain encompassing putative YQRL and dileucine internalization signals, (ii) two predicted intracytoplasmic alpha-helical domains, (iii) the complete intracytoplasmic domain, or (iv) the intracytoplasmic domain and the transmembrane anchor region. Confocal laser scanning microscopy showed that gB derivatives lacking at least the last 29 amino acids (aa) localize close to the plasma membrane, while the full-length protein accumulates in intracellular aggregations. Trans-complementation studies with a gB-deleted PrV (PrV-gB(-)) demonstrated that the 29-aa truncated form lacking the putative internalization signals and the C-terminal alpha-helical domain (gB-008) was efficiently incorporated into PrV-gB(-) virions and efficiently complemented infectivity and cell-to-cell spread. Moreover, gB-008 exhibited an enhanced fusogenic activity. In contrast, gB proteins lacking both alpha-helical domains (gB-007), the complete intracytoplasmic domain, or the intracytoplasmic domain and transmembrane anchor were only inefficiently or not at all incorporated into PrV-gB(-) virions and did not complement infectivity. However, gB-007 was able to mediate cell-to-cell spread of PrV-gB(-). Similar phenotypes were observed when virus recombinants expressing gB-008 or gB-007, respectively, instead of wild-type gB were isolated and analyzed. Thus, our data show that internalization of gB is not required for gB incorporation into virions nor for its function in either entry or cell-to-cell spread. Moreover, they indicate different requirements for gB in these membrane fusion processes.

摘要

与单纯疱疹病毒1型(HSV-1)的I型膜糖蛋白B(gB)同源的糖蛋白是疱疹病毒科中保守性最高的糖蛋白,存在于每个疱疹病毒亚科的成员中。在甲型疱疹病毒伪狂犬病病毒(PrV)中,gB是进入靶细胞和病毒直接细胞间传播所必需的。这些过程虽然相关,但似乎是不同的,因此分析它们是否需要gB的不同功能很有意思。为此,我们通过删除以下内容建立了稳定表达不同羧基末端截短形式的PrV gB的细胞系:(i)一个预测的胞质内α-螺旋结构域,包含假定的YQRL和双亮氨酸内化信号;(ii)两个预测的胞质内α-螺旋结构域;(iii)完整的胞质结构域;或(iv)胞质结构域和跨膜锚定区域。共聚焦激光扫描显微镜显示,至少缺少最后29个氨基酸(aa)的gB衍生物定位于靠近质膜的位置,而全长蛋白则聚集在细胞内聚集体中。用缺失gB的PrV(PrV-gB(-))进行的反式互补研究表明,缺少假定内化信号和C末端α-螺旋结构域的29-aa截短形式(gB-008)有效地整合到PrV-gB(-)病毒粒子中,并有效地补充了感染性和细胞间传播能力。此外,gB-008表现出增强的融合活性。相比之下,缺少两个α-螺旋结构域(gB-007)、完整的胞质结构域或胞质结构域和跨膜锚定的gB蛋白仅低效地或根本没有整合到PrV-gB(-)病毒粒子中,并且不能补充感染性。然而,gB-007能够介导PrV-gB(-)的细胞间传播。当分别分离并分析表达gB-008或gB-007而非野生型gB的病毒重组体时,观察到了类似的表型。因此,我们的数据表明,gB的内化对于gB整合到病毒粒子中以及其在进入或细胞间传播中的功能都不是必需的。此外,它们表明在这些膜融合过程中对gB有不同的要求。

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