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ICP0 Is Not Required for Efficient Stress-Induced Reactivation of Herpes Simplex Virus Type 1 from Cultured Quiescently Infected Neuronal Cells

机译:ICP0不需要从培养的静止期感染的神经元细胞中有效应激诱导的1型单纯疱疹病毒的激活。

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摘要

Viral genes sufficient and required for herpes simplex virus type 1 (HSV-1) reactivation were identified using neuronally differentiated PC12 cells (ND-PC12 cells) in which quiescent infections with wild-type and recombinant strains were established. In this model, the expression of ICP0, VP16, and ICP4 from adenovirus vectors was sufficient to reactivate strains 17+ and KOS. The transactivators induced similar levels of reactivation with KOS; however, 17+ responded more efficiently to ICP0. To identify viral transactivators required for reactivation, we examined quiescently infected PC12 cell cultures (QIF-PC12 cell cultures) established with HSV-1 deletion mutants R7910 (ΔICP0), KD6 (ΔICP4), and in1814, a virus containing an insertion mutation in VP16. Although growth of these mutant viruses was impaired in ND-PC12 cells, R7910 and in1814 reactivated at levels equivalent to or better than their respective parental controls following stress (i.e., heat or forskolin) treatment. After treatment with trichostatin A, in1814 and 17+ reactivated efficiently, whereas the F strain and R7910 reactivated inefficiently. In contrast, KD6 failed to reactivate. In experiments with the recombinant KM100, which contains the in1814 mutation in VP16 and the n212 mutation in ICP0, spontaneous and stress-induced reactivation was observed. However, two strains, V422 and KM110, which lack the acidic activation domain of VP16, did not reactivate above low spontaneous levels after stress. These results demonstrate that in QIF-PC12 cells ICP0 is not required for efficient reactivation of HSV-1, the acidic activation domain of VP16 is essential for stress-induced HSV-1 reactivation, and HSV-1 reactivation is modulated uniquely by different treatment constraints and phenotypes.
机译:使用神经元分化的PC12细胞(ND-PC12细胞)鉴定了足以激活1型单纯疱疹病毒(HSV-1)并重新激活的病毒基因,其中建立了野生型和重组株的静态感染。在该模型中,来自腺病毒载体的ICP0,VP16和ICP4的表达足以激活17+和KOS菌株。反式激活剂诱导了与KOS相似的再激活水平;但是,17岁以上的人对ICP0的响应更加有效。为确定激活所需的病毒反式激活因子,我们检查了静止感染的PC12细胞培养物(QIF-PC12细胞培养物),该培养物由HSV-1缺失突变体R7910(ΔICP0),KD6(ΔICP4)和in1814(在VP16中包含插入突变的病毒)建立。尽管这些突变病毒在ND-PC12细胞中的生长受到了损害,但在应激(即加热或福斯高林)处理后,R7910和in1814的活化水平等于或高于其各自的亲本对照水平。用曲古抑菌素A处理后,in1814和17+有效活化,而F菌株和R7910无效活化。相反,KD6无法重新激活。在重组KM100的实验中,该重组KM100在VP16中包含in1814突变,在ICP0中包含n212突变,观察到了自发的和应激诱导的重新激活。然而,缺少VP16酸性激活结构域的两个菌株V422和KM110在胁迫后无法在高于低自发水平时重新激活。这些结果表明,在QIF-PC12细胞中,ICP0不需要HSV-1的有效激活,而VP16的酸性激活域对于应激诱导的HSV-1激活是必不可少的,并且HSV-1的激活受到不同处理限制的唯一调节和表型。

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