Awasthi Sita, Lubinski John M, Eisenberg Roselyn J, Cohen Gary H, Friedman Harvey M
Infectious Disease Division, Department of Medicine, School of Medicine, Philadelphia, PA 19104-6073, USA.
Vaccine. 2008 Feb 26;26(9):1195-203. doi: 10.1016/j.vaccine.2007.12.032. Epub 2008 Jan 14.
HSV-1 glycoprotein D (gD) interacts with HVEM and nectin-1 cell receptors to initiate virus entry. We prepared an HSV-1 strain with mutations in the gD gene at amino acid residues 3 and 38 by changing alanine to cysteine and tyrosine to cysteine, respectively (A3C/Y38C). These mutations were constructed with the intent of evaluating infection in vivo when virus enters by HVEM but not nectin-1 receptors and were based on prior reports demonstrating that purified gDA3C/Y38C protein binds to HVEM but not to nectin-1. While preparing a high-titered purified virus pool, the cysteine mutation at position 38 reverted to tyrosine, which occurred on two separate occasions. The resultant HSV-1 strain, KOS-gDA3C, had a single amino acid mutation at residue 3 and exhibited reduced entry into both HVEM and nectin-1 expressing cells. When tested in the murine flank model, the mutant virus was markedly attenuated for virulence and caused only mild disease, while the parental and rescued viruses produced much more severe disease. Thirty days after KOS-gDA3C infection, mice were challenged with a lethal dose of HSV-1 and were highly resistant to disease. The KOS-gDA3C mutation was stable during 30 passages in vitro and was present in each of 3 isolates obtained from infected mice. Therefore, this gD mutant virus impaired in entry may represent a novel candidate for an attenuated live HSV-1 vaccine.
单纯疱疹病毒1型糖蛋白D(gD)与疱疹病毒侵入介质(HVEM)和nectin-1细胞受体相互作用,从而启动病毒进入细胞的过程。我们制备了一种单纯疱疹病毒1型毒株,其gD基因在氨基酸残基3和38处发生了突变,分别将丙氨酸变为半胱氨酸,酪氨酸变为半胱氨酸(A3C/Y38C)。构建这些突变的目的是评估当病毒通过HVEM而非nectin-1受体进入时在体内的感染情况,这是基于先前的报道,即纯化的gDA3C/Y38C蛋白可与HVEM结合,但不与nectin-1结合。在制备高滴度纯化病毒库时,38位的半胱氨酸突变恢复为酪氨酸,这种情况在两个不同的场合发生。所得的单纯疱疹病毒1型毒株KOS-gDA3C在残基3处有一个单一氨基酸突变,并且进入表达HVEM和nectin-1的细胞的能力均降低。在小鼠侧腹模型中进行测试时,突变病毒的毒力明显减弱,仅引起轻微疾病,而亲本病毒和拯救病毒则导致更严重的疾病。KOS-gDA3C感染30天后,用致死剂量的单纯疱疹病毒1型攻击小鼠,小鼠对疾病具有高度抗性。KOS-gDA3C突变在体外传代30次期间是稳定的,并且存在于从感染小鼠获得的3个分离株中的每一个中。因此,这种进入能力受损的gD突变病毒可能代表一种新型的减毒活单纯疱疹病毒1型疫苗候选物。