Hobbs W E, Brough D E, Kovesdi I, DeLuca N A
Department of Molecular Genetics and Biochemistry, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15261, USA.
J Virol. 2001 Apr;75(7):3391-403. doi: 10.1128/JVI.75.7.3391-3403.2001.
Herpes simplex virus (HSV) ICP0 can effectively activate gene expression from otherwise silent promoters contained on persisting viral genomes. However, the expression of high levels of ICP0, as from ICP4(-) HSV type 1 (HSV-1) vectors, results in marked toxicity. We have analyzed the results of ICP0 expressed from an E1(-) E4(-) adenovirus vector (AdS.11E4ICP0) in which ICP0 expression is controlled from the endogenous adenoviral E4 promoter. In this system, the expression level of ICP0 was reduced more than 1,000-fold relative to the level of expression from HSV-1 vectors. This low level of ICP0 did not affect cellular division or greatly perturb cellular metabolism as assessed by gene expression array analysis comparing the effects of HSV and adenovirus vector strains. However, this amount of ICP0 was sufficient to quantitatively destroy ND10 structures as measured by promyelocytic leukemia immunofluorescence. The levels of adenovirus-expressed ICP0 were sufficient to activate quiescent viral genomes in trans and promote persistent transgene expression in cis. Moreover, infection of complementing cells with AdS.11E4ICP0 promoted viral growth and resulted in a 20-fold increase in the plaquing efficiency of d109, a virus defective for all five immediate-early genes. Thus, the low level expression of ICP0 from the E1(-) E4(-) adenovirus vector may increase the utility of adenovirus vectors and also provides a means to efficiently quantify and possibly propagate HSV vectors defective in ICP0. Importantly, the results demonstrate that the activation function of ICP0 may not result from changes in cellular gene expression, but possibly as a direct consequence of an enzymatic function inherent to the protein that may involve its action at ND10 resulting in the preferential activation of viral genomes.
单纯疱疹病毒(HSV)的ICP0能够有效激活持续存在的病毒基因组上原本沉默的启动子的基因表达。然而,从ICP4(-)1型单纯疱疹病毒(HSV-1)载体中表达高水平的ICP0会导致明显的毒性。我们分析了从E1(-)E4(-)腺病毒载体(AdS.11E4ICP0)表达的ICP0的结果,其中ICP0的表达由内源性腺病毒E4启动子控制。在这个系统中,ICP0的表达水平相对于HSV-1载体的表达水平降低了1000倍以上。通过比较HSV和腺病毒载体菌株的作用的基因表达阵列分析评估,这种低水平的ICP0不影响细胞分裂或极大地扰乱细胞代谢。然而,通过早幼粒细胞白血病免疫荧光测量,这种量的ICP0足以定量破坏ND10结构。腺病毒表达的ICP0水平足以反式激活静止的病毒基因组并顺式促进持续的转基因表达。此外,用AdS.11E4ICP0感染互补细胞促进了病毒生长,并导致d109(一种所有五个立即早期基因都有缺陷的病毒)的噬斑形成效率提高了20倍。因此,从E1(-)E4(-)腺病毒载体低水平表达ICP0可能会增加腺病毒载体的实用性,并且还提供了一种有效定量以及可能繁殖ICP0缺陷的HSV载体的方法。重要的是,结果表明ICP0的激活功能可能不是由细胞基因表达的变化引起的,而是可能直接源于该蛋白质固有的酶促功能,这可能涉及其在ND10处的作用,从而导致病毒基因组的优先激活。