Everett R D
MRC Virology Unit, Institute of Virology, Glasgow, U.K.
J Gen Virol. 1989 May;70 ( Pt 5):1185-202. doi: 10.1099/0022-1317-70-5-1185.
Transcription from the early and late classes of the herpes simplex virus type 1 (HSV-1) promoters requires prior immediate early (IE) gene expression. Although the product of IE gene 1, Vmw110, is not absolutely essential for virus growth in tissue culture, transfection experiments have demonstrated that Vmw110 can activate gene expression both by itself and in a synergistic manner with the product of IE gene 3, Vmw175. This paper describes the construction of 10 mutant HSV-1 viruses with deletion and insertion mutations in Vmw110. The mutant viruses were then studied in single-step growth curve experiments, by assaying for plaques in a variety of cell types and by analysis of viral polypeptide synthesis during productive infection at high and low multiplicities. The results show that mutations in Vmw110 reduce the efficiency of plaque formation by HSV-1; the extent of this reduction depends on cell type and the position of the mutation in the polypeptide. In particular, a potential zinc finger domain is crucial for Vmw110 function. The patterns and amounts of viral polypeptide synthesis during high multiplicity infections with mutant and wild-type viruses were similar in all cell types. At low multiplicity, mutations in Vmw110 reduced viral gene expression in the least permissive cell type. The data suggest that the role of Vmw110 during virus infection in tissue culture is at a very early stage of low multiplicity infections; its inactivity leads to the failure to express viral genes so that the virus does not enter the lytic cycle.
单纯疱疹病毒1型(HSV - 1)早期和晚期启动子的转录需要先前立即早期(IE)基因的表达。尽管IE基因1的产物Vmw110对于病毒在组织培养中的生长并非绝对必要,但转染实验表明,Vmw110既能自身激活基因表达,也能与IE基因3的产物Vmw175协同激活基因表达。本文描述了构建10种在Vmw110中具有缺失和插入突变的HSV - 1突变病毒。然后通过单步生长曲线实验、在多种细胞类型中测定噬斑以及分析高倍和低倍感染期间生产性感染过程中的病毒多肽合成,对这些突变病毒进行了研究。结果表明,Vmw110中的突变降低了HSV - 1形成噬斑的效率;这种降低的程度取决于细胞类型和多肽中突变的位置。特别是,一个潜在的锌指结构域对Vmw110的功能至关重要。在所有细胞类型中,用突变病毒和野生型病毒进行高倍感染期间病毒多肽合成的模式和量相似。在低倍感染时,Vmw110中的突变在最不易感染的细胞类型中降低了病毒基因表达。数据表明,Vmw110在组织培养中病毒感染期间的作用处于低倍感染的非常早期阶段;其无活性导致无法表达病毒基因,从而使病毒不能进入裂解周期。