Boulware S L, Bronstein J C, Nordby E C, Weber P C
Infectious Diseases Section, Pfizer Global Research and Development, 2800 Plymouth Road, Ann Arbor, MI 48105, USA.
Antiviral Res. 2001 Aug;51(2):111-25. doi: 10.1016/s0166-3542(01)00147-4.
Analysis of a large compound library in a high throughput virus infection assay screen identified the benzothiophene PD146626 as a potent and specific inhibitor of herpes simplex virus type 1 (HSV-1) replication. PD146626 possessed an EC(50) and EC(90) against HSV-1 of 0.1 and 1 microM, respectively, and mediated no detectable cytotoxicity in cells at concentrations up to 1 microM. Western blot analyses and time of addition experiments demonstrated that in the presence of PD146626 HSV-1 underwent a specific block in viral gene expression at the immediate early stage. However, several observations indicated that a cellular function rather than a viral immediate early transactivator protein represented the molecular target for PD146626, including the lack of resistance of VP16 and ICP0 mutant viruses to the compound, the inability to select resistant strains of HSV-1 following exhaustive serial passaging of virus in the presence of the compound, and the sensitivity of human cytomegalovirus, which lacks VP16 and ICP0 homologs, to the compound. Moreover, kinetic studies suggested an unusual pattern of responsiveness of the host cell to PD146626, in that the compound could induce an extended antiviral state in cells after only a brief exposure. Together these results suggest that PD146626 targets a novel cellular function that is critical for the expression of HSV-1 immediate early genes but not host cell genes.
在一项高通量病毒感染检测筛选中对一个大型化合物文库进行分析,确定苯并噻吩PD146626是单纯疱疹病毒1型(HSV-1)复制的一种强效且特异性抑制剂。PD146626对HSV-1的半数有效浓度(EC50)和90%有效浓度(EC90)分别为0.1和1微摩尔,并且在浓度高达1微摩尔时对细胞未介导可检测到的细胞毒性。蛋白质免疫印迹分析和添加时间实验表明,在存在PD146626的情况下,HSV-1在病毒基因表达的即刻早期阶段经历了特异性阻断。然而,一些观察结果表明,PD146626的分子靶点是一种细胞功能而非病毒即刻早期反式激活蛋白,包括VP16和ICP0突变病毒对该化合物缺乏抗性、在化合物存在下病毒经过多次连续传代后无法筛选出HSV-1抗性毒株,以及缺乏VP16和ICP0同源物的人巨细胞病毒对该化合物敏感。此外,动力学研究表明宿主细胞对PD146626的反应模式不同寻常,即该化合物仅短暂暴露后就能在细胞中诱导延长的抗病毒状态。这些结果共同表明,PD146626靶向一种对HSV-1即刻早期基因表达至关重要但对宿主细胞基因并非如此的新型细胞功能。