Lomonte P, Everett R D
MRC Virology Unit, Glasgow G11 5JR, Scotland, United Kingdom.
J Virol. 1999 Nov;73(11):9456-67. doi: 10.1128/JVI.73.11.9456-9467.1999.
Herpes simplex virus type 1 (HSV-1) immediate-early protein Vmw110 stimulates the onset of virus infection in a multiplicity-dependent manner and is required for efficient reactivation from latency. Recent work has shown that Vmw110 is able to interact with or modify the stability of several cellular proteins. In this report we analyze the ability of Vmw110 to inhibit the progression of cells through the cell cycle. We show by fluorescence-activated cell sorter and/or confocal microscopy analysis that an enhanced green fluorescent protein-tagged Vmw110 possesses the abilities both to prevent transfected cells moving from G(1) into S phase and to block infected cells at an unusual stage of mitosis defined as pseudo-prometaphase. The latter property correlates with the Vmw110-induced proteasome-dependent degradation of CENP-C, a centromeric protein component of the inner plate of human kinetochores. We also show that whereas Vmw110 is not the only viral product implicated in the block of infected cells at the G(1)/S border, the mitotic block is a specific property of Vmw110 and more particularly of its RING finger domain. These data explain the toxicity of Vmw110 when expressed alone in transfected cells and provide an explanation for the remaining toxicity of replication-defective mutants of HSV-1 expressing Vmw110. In addition to contributing to our understanding of the effects of Vmw110 on the cell, our results demonstrate that Vmw110 expression is incompatible with the proliferation of a dividing cell population. This factor is of obvious importance to the design of gene therapy vectors based on HSV-1.
单纯疱疹病毒1型(HSV-1)的立即早期蛋白Vmw110以多倍体依赖性方式刺激病毒感染的起始,并且是潜伏状态下有效重新激活所必需的。最近的研究表明,Vmw110能够与几种细胞蛋白相互作用或改变其稳定性。在本报告中,我们分析了Vmw110抑制细胞通过细胞周期进程的能力。我们通过荧光激活细胞分选仪和/或共聚焦显微镜分析表明,增强型绿色荧光蛋白标记的Vmw110具有阻止转染细胞从G1期进入S期以及将感染细胞阻滞在一个定义为假前期的异常有丝分裂阶段的能力。后一种特性与Vmw110诱导的着丝粒蛋白CENP-C(人动粒内板着丝粒蛋白成分)的蛋白酶体依赖性降解相关。我们还表明,虽然Vmw110不是唯一与感染细胞在G1/S边界阻滞有关的病毒产物,但有丝分裂阻滞是Vmw110尤其是其环指结构域的特异性特性。这些数据解释了Vmw110在转染细胞中单独表达时的毒性,并为表达Vmw110的HSV-1复制缺陷型突变体的剩余毒性提供了解释。除了有助于我们理解Vmw110对细胞的影响外,我们的结果还表明Vmw110的表达与分裂细胞群体的增殖不相容。这一因素对于基于HSV-1的基因治疗载体的设计显然具有重要意义。