Walev I, Weise K, Falke D
Division of Experimental Virology, Johannes Gutenberg University, Mainz, Germany.
J Gen Virol. 1991 Jun;72 ( Pt 6):1377-82. doi: 10.1099/0022-1317-72-6-1377.
Treating strains of herpes simplex virus (HSV) in culture with either cyclosporin A or compound 48/80, allowed the strains to be divided into two groups. Group 1 contains the strains ANG and HFEM of HSV-1 and Lux syn (HSV-2) producing fusion from within (FFWI) and fusion from without (FFWO). Cyclosporin A fails to inhibit both types of fusion at concentrations up to 100 microM. Strains ANG and HFEM belong to the syn 3 marker locus group identified for HSV-1. Group 2 contains all other fusion-producing strains of HSV tested so far. Cyclosporin A inhibits FFWI at concentrations as low as 10 to 20 microM. These strains belong to the syn locus marker groups 1, 2, 4 and 5. From the fact that mutations in glycoprotein B belong to the syn 3 marker group we conclude that glycoprotein B is of major importance for FFWO. Compound 48/80 also differentiates between these two groups of viruses. O-Acetyl cyclosporin A is unable to inhibit FFWI induced by group 2 viruses; in contrast, cyclosporin H and the Ca2+ ionophore A23187 exert inhibition effects similar to those exerted by cyclosporin A. We conclude from the effects of these compounds that binding properties of the OH group of cyclosporin A and an increase of Ca2+ ions may be preconditions for the observed effects. Binding of cyclosporin A to cyclophilin does not appear to be responsible for these effects.
在培养物中用环孢菌素A或化合物48/80处理单纯疱疹病毒(HSV)毒株,可将这些毒株分为两组。第1组包含HSV-1的ANG和HFEM毒株以及Lux syn(HSV-2)毒株,它们产生内融合(FFWI)和外融合(FFWO)。在浓度高达100微摩尔时,环孢菌素A无法抑制这两种融合类型。ANG和HFEM毒株属于为HSV-1鉴定的syn 3标记基因座组。第2组包含迄今为止测试的所有其他产生融合的HSV毒株。环孢菌素A在低至10至20微摩尔的浓度下就能抑制FFWI。这些毒株属于syn基因座标记组1、2、4和5。从糖蛋白B中的突变属于syn 3标记组这一事实,我们得出结论,糖蛋白B对FFWO至关重要。化合物48/80也能区分这两组病毒。O-乙酰环孢菌素A无法抑制第2组病毒诱导的FFWI;相反,环孢菌素H和钙离子载体A23187发挥的抑制作用与环孢菌素A相似。从这些化合物的作用我们得出结论,环孢菌素A的羟基结合特性以及钙离子的增加可能是观察到这些作用的前提条件。环孢菌素A与亲环蛋白的结合似乎与这些作用无关。