Aldaz-Carroll Lydia, Whitbeck J Charles, Ponce de Leon Manuel, Lou Huan, Hirao Lauren, Isaacs Stuart N, Moss Bernard, Eisenberg Roselyn J, Cohen Gary H
Department of Microbiology, School of Dental Medicine, University of Pennsylvania, 240 S. 40th St., Philadelphia, PA 19104-6002, USA.
J Virol. 2005 May;79(10):6260-71. doi: 10.1128/JVI.79.10.6260-6271.2005.
Vaccinia extracellular enveloped virus (EEV) is critical for cell-to-cell and long-range virus spread both in vitro and in vivo. The B5R gene encodes an EEV-specific type I membrane protein that is essential for efficient EEV formation. The majority of the B5R ectodomain consists of four domains with homology to short consensus repeat domains followed by a stalk. Previous studies have shown that polyclonal antibodies raised against the B5R ectodomain inhibit EEV infection. In this study, our goal was to elucidate the antigenic structure of B5R and relate this to its function. To do this, we produced multimilligram quantities of vaccinia virus B5R as a soluble protein [B5R(275t)] using a baculovirus expression system. We then selected and characterized a panel of 26 monoclonal antibodies (MAbs) that recognize B5R(275t). Five of these MAbs neutralized EEV and inhibited comet formation. Two other MAbs were able only to neutralize EEV, while five others were able only to inhibit comet formation. This suggests that the EEV neutralization and comet inhibition assays measure different viral functions and that at least two different antigenic sites on B5R are important for these activities. We further characterized the MAbs and the antigenic structure of B5R(275t) by peptide mapping and by reciprocal MAb blocking studies using biosensor analysis. The epitopes recognized by neutralizing MAbs were localized to SCR1-SCR2 and/or the stalk of B5R(275t). Furthermore, the peptide and blocking data support the concept that SCR1 and the stalk may be in juxtaposition and may be part of the same functional domain.
痘苗细胞外被膜病毒(EEV)对于病毒在体外和体内的细胞间传播及远距离传播至关重要。B5R基因编码一种EEV特异性的I型膜蛋白,该蛋白对于高效形成EEV必不可少。B5R胞外域的大部分由四个与短共有重复序列结构域具有同源性的结构域组成,其后跟着一个柄部。先前的研究表明,针对B5R胞外域产生的多克隆抗体可抑制EEV感染。在本研究中,我们的目标是阐明B5R的抗原结构并将其与其功能相关联。为此,我们使用杆状病毒表达系统制备了多毫克量的痘苗病毒B5R作为可溶性蛋白[B5R(275t)]。然后,我们筛选并鉴定了一组26种识别B5R(275t)的单克隆抗体(MAb)。其中五种MAb可中和EEV并抑制彗星形成。另外两种MAb仅能中和EEV,而另外五种仅能抑制彗星形成。这表明EEV中和试验和彗星抑制试验测量的是不同的病毒功能,并且B5R上至少两个不同的抗原位点对这些活性很重要。我们通过肽图谱分析以及使用生物传感器分析的相互MAb阻断研究,进一步表征了MAb和B5R(275t)的抗原结构。中和MAb识别的表位定位于B5R(275t)的SCR1-SCR2和/或柄部。此外,肽和阻断数据支持SCR1和柄部可能相邻且可能是同一功能域一部分的概念。