首页> 美国卫生研究院文献>PLoS Pathogens >De Novo Herpes Simplex Virus VP16 Expression Gates a Dynamic Programmatic Transition and Sets the Latent/Lytic Balance during Acute Infection in Trigeminal Ganglia
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De Novo Herpes Simplex Virus VP16 Expression Gates a Dynamic Programmatic Transition and Sets the Latent/Lytic Balance during Acute Infection in Trigeminal Ganglia

机译:De Novo单纯疱疹病毒VP16表达在三叉神经节急性感染过程中开启了动态程序转换并设定了潜伏/溶质平衡

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摘要

The life long relationship between herpes simplex virus and its host hinges on the ability of the virus to aggressively replicate in epithelial cells at the site of infection and transport into the nervous system through axons innervating the infection site. Interaction between the virus and the sensory neuron represents a pivot point where largely unknown mechanisms lead to a latent or a lytic infection in the neuron. Regulation at this pivot point is critical for balancing two objectives, efficient widespread seeding of the nervous system and host survival. By combining genetic and in vivo in approaches, our studies reveal that the balance between latent and lytic programs is a process occurring early in the trigeminal ganglion. Unexpectedly, activation of the latent program precedes entry into the lytic program by 12 -14hrs. Importantly, at the individual neuronal level, the lytic program begins as a transition out of this acute stage latent program and this escape from the default latent program is regulated by de novo VP16 expression. Our findings support a model in which regulated de novo VP16 expression in the neuron mediates entry into the lytic cycle during the earliest stages of virus infection in vivo. These findings support the hypothesis that the loose association of VP16 with the viral tegument combined with sensory axon length and transport mechanisms serve to limit arrival of virion associated VP16 into neuronal nuclei favoring latency. Further, our findings point to specialized features of the VP16 promoter that control the de novo expression of VP16 in neurons and this regulation is a key component in setting the balance between lytic and latent infections in the nervous system.
机译:单纯疱疹病毒与其宿主之间的终生关系取决于该病毒在感染部位上皮细胞中主动复制并通过支配感染部位的轴突进入神经系统的能力。病毒和感觉神经元之间的相互作用代表了一个枢轴点,在该点上,很大程度上未知的机制导致神经元潜伏或溶菌性感染。在这个关键点进行调节对于平衡两个目标至关重要,这两个目标是神经系统的有效广泛播种和宿主存活。通过将遗传和体内方法相结合,我们的研究表明,潜伏程序和裂解程序之间的平衡是一个在三叉神经节早期发生的过程。出乎意料的是,潜在程序的激活在进入裂解程序之前需要12 -14小时。重要的是,在单个神经元水平上,裂解程序是从此急性潜伏程序的过渡开始的,这种从默认潜伏程序的逃逸是由新的VP16表达调节的。我们的发现支持一种模型,其中在体内病毒感染的最早阶段,神经元中从头调节的VP16表达介导了进入裂解周期的过程。这些发现支持以下假设:VP16与病毒外皮的松散结合以及感觉轴突的长度和转运机制有助于限制病毒体相关的VP16进入神经元核,有利于潜伏期。此外,我们的发现指向控制神经元中VP16从头表达的VP16启动子的特殊功能,而这种调节是在神经系统中溶解性和潜伏性感染之间建立平衡的关键组成部分。

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