首页> 美国卫生研究院文献>Journal of Virology >Herpes Simplex Virus VP16 but Not ICP0 Is Required To Reduce Histone Occupancy and Enhance Histone Acetylation on Viral Genomes in U2OS Osteosarcoma Cells
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Herpes Simplex Virus VP16 but Not ICP0 Is Required To Reduce Histone Occupancy and Enhance Histone Acetylation on Viral Genomes in U2OS Osteosarcoma Cells

机译:需要单纯疱疹病毒VP16(而不是ICP0)来减少U2OS骨肉瘤细胞中的组蛋白占有率并增强组蛋白乙酰化对病毒基因组的作用

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摘要

The herpes simplex virus (HSV) genome rapidly becomes associated with histones after injection into the host cell nucleus. The viral proteins ICP0 and VP16 are required for efficient viral gene expression and have been implicated in reducing the levels of underacetylated histones on the viral genome, raising the possibility that high levels of underacetylated histones inhibit viral gene expression. The U2OS osteosarcoma cell line is permissive for replication of ICP0 and VP16 mutants and appears to lack an innate antiviral repression mechanism present in other cell types. We therefore used chromatin immunoprecipitation to determine whether U2OS cells are competent to load histones onto HSV DNA and, if so, whether ICP0 and/or VP16 are required to reduce histone occupancy and enhance acetylation in this cell type. High levels of underacetylated histone H3 accumulated at several locations on the viral genome in the absence of VP16 activation function; in contrast, an ICP0 mutant displayed markedly reduced histone levels and enhanced acetylation, similar to wild-type HSV. These results demonstrate that U2OS cells are competent to load underacetylated histones onto HSV DNA and uncover an unexpected role for VP16 in modulating chromatin structure at viral early and late loci. One interpretation of these findings is that ICP0 and VP16 affect viral chromatin structure through separate pathways, and the pathway targeted by ICP0 is defective in U2OS cells. We also show that HSV infection results in decreased histone levels on some actively transcribed genes within the cellular genome, demonstrating that viral infection alters cellular chromatin structure.
机译:单纯疱疹病毒(HSV)基因组注射入宿主细胞核后,迅速与组蛋白结合。病毒蛋白ICP0和VP16是高效病毒基因表达所必需的,并且与降低病毒基因组上乙酰化不足的组蛋白的水平有关,从而增加了乙酰化不足的组蛋白高水平抑制病毒基因表达的可能性。 U2OS骨肉瘤细胞系允许ICP0和VP16突变体的复制,并且似乎缺乏其他细胞类型中存在的先天性抗病毒抑制机制。因此,我们使用染色质免疫沉淀来确定U2OS细胞是否有能力将组蛋白装载到HSV DNA上,如果是,则是否需要ICP0和/或VP16来减少这种细胞类型中组蛋白的占有率并增强乙酰化。在缺乏VP16激活功能的情况下,高水平的乙酰化不足的组蛋白H3积累在病毒基因组的多个位置;相反,类似于野生型HSV,ICP0突变体显示出显着降低的组蛋白水平和增强的乙酰化作用。这些结果表明,U2OS细胞能够将未乙酰化的组蛋白加载到HSV DNA上,并揭示VP16在调节病毒早期和晚期基因座的染色质结构中的意外作用。这些发现的一种解释是,ICP0和VP16通过单独的途径影响病毒染色质结构,而ICP0靶向的途径在U2OS细胞中是有缺陷的。我们还显示,HSV感染导致细胞基因组内一些活跃转录的基因的组蛋白水平降低,表明病毒感染改变了细胞染色质的结构。

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