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单纯疱疹病毒 1 型 VP16 蛋白诱导神经元表达可使伪狂犬病病毒逃避沉默和重新激活。

Neuronal expression of herpes simplex virus-1 VP16 protein induces pseudorabies virus escape from silencing and reactivation.

机构信息

Department of Molecular Biology, Princeton University, Princeton, New Jersey, USA.

Princeton Neuroscience Institute, Princeton University, Princeton, New Jersey, USA.

出版信息

J Virol. 2024 Jul 23;98(7):e0056124. doi: 10.1128/jvi.00561-24. Epub 2024 Jun 13.

Abstract

Alpha herpesvirus (α-HV) particles enter their hosts from mucosal surfaces and efficiently maintain fast transport in peripheral nervous system (PNS) axons to establish infections in the peripheral ganglia. The path from axons to distant neuronal nuclei is challenging to dissect due to the difficulty of monitoring early events in a dispersed neuron culture model. We have established well-controlled, reproducible, and reactivateable latent infections in compartmented rodent neurons by infecting physically isolated axons with a small number of viral particles. This system not only recapitulates the physiological infection route but also facilitates independent treatment of isolated cell bodies or axons. Consequently, this system enables study not only of the stimuli that promote reactivation but also the factors that regulate the initial switch from productive to latent infection. Adeno-associated virus (AAV)-mediated expression of herpes simplex-1 (HSV-1) VP16 alone in neuronal cell bodies enabled the escape from silencing of incoming pseudorabies virus (PRV) genomes. Furthermore, the expression of HSV VP16 alone reactivated a latent PRV infection in this system. Surprisingly, the expression of PRV VP16 protein supported neither PRV escape from silencing nor reactivation. We compared transcription transactivation activity of both VP16 proteins in primary neurons by RNA sequencing and found that these homolog viral proteins produce different gene expression profiles. AAV-transduced HSV VP16 specifically induced the expression of proto-oncogenes including c-Jun and Pim2. In addition, HSV VP16 induces phosphorylation of c-Jun in neurons, and when this activity is inhibited, escape of PRV silencing is dramatically reduced.IMPORTANCEDuring latency, alpha herpesvirus genomes are silenced yet retain the capacity to reactivate. Currently, host and viral protein interactions that determine the establishment of latency, induce escape from genome silencing or reactivation are not completely understood. By using a compartmented neuronal culture model of latency, we investigated the effect of the viral transcriptional activator, VP16 on pseudorabies virus (PRV) escape from genome silencing. This model recapitulates the physiological infection route and enables the study of the stimuli that regulate the initial switch from a latent to productive infection. We investigated the neuronal transcriptional activation profiles of two homolog VP16 proteins (encoded by HSV-1 or PRV) and found distinct gene activation signatures leading to diverse infection outcomes. This study contributes to understanding of how alpha herpesvirus proteins modulate neuronal gene expression leading to the initiation of a productive or a latent infection.

摘要

α疱疹病毒 (α-HV) 颗粒从黏膜表面进入宿主,并在周围神经系统 (PNS) 轴突中有效地维持快速转运,从而在周围神经节中建立感染。由于难以监测分散神经元培养模型中早期事件,因此从轴突到远处神经元核的路径难以剖析。我们通过用少量病毒颗粒感染物理分离的轴突,在分隔的啮齿动物神经元中建立了可控制、可重复和可重新激活的潜伏感染。该系统不仅再现了生理感染途径,而且还便于对分离的细胞体或轴突进行独立处理。因此,该系统不仅可以研究促进重新激活的刺激因素,还可以研究调节从产生活性感染到潜伏感染的初始转变的因素。腺相关病毒 (AAV) 介导的单纯疱疹病毒 1 (HSV-1) VP16 在神经元细胞体中的表达使传入伪狂犬病病毒 (PRV) 基因组能够逃脱沉默。此外,该系统中单纯表达 HSV VP16 即可重新激活潜伏的 PRV 感染。令人惊讶的是,PRV VP16 蛋白的表达既不支持 PRV 逃脱沉默,也不支持重新激活。我们通过 RNA 测序比较了这两种 VP16 蛋白在原代神经元中的转录转激活活性,发现这些同源病毒蛋白产生不同的基因表达谱。AAV 转导的 HSV VP16 特异性诱导包括 c-Jun 和 Pim2 在内的原癌基因的表达。此外,HSV VP16 在神经元中诱导 c-Jun 的磷酸化,当该活性被抑制时,PRV 沉默的逃逸显著减少。重要的是,在潜伏期内,α疱疹病毒基因组被沉默,但仍保留重新激活的能力。目前,决定潜伏期建立、诱导基因组沉默逃逸或重新激活的宿主和病毒蛋白相互作用尚不完全清楚。通过使用潜伏神经元培养模型,我们研究了病毒转录激活因子 VP16 对伪狂犬病病毒 (PRV) 从基因组沉默中逃逸的影响。该模型再现了生理感染途径,并能够研究调节从潜伏到产生活性感染的初始转变的刺激因素。我们研究了两种同源 VP16 蛋白(由 HSV-1 或 PRV 编码)对神经元的转录激活谱,并发现了不同的基因激活特征,导致不同的感染结果。这项研究有助于理解α疱疹病毒蛋白如何调节神经元基因表达,从而启动产生活性或潜伏性感染。

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