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Anterograde Spread of Herpes Simplex Virus Type 1 Requires Glycoprotein E and Glycoprotein I but Not Us9

机译:1型单纯疱疹病毒的顺行传播需要糖蛋白E和糖蛋白I但不需要Us9

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摘要

Anterograde neuronal spread (i.e., spread from the neuron cell body toward the axon terminus) is a critical component of the alphaherpesvirus life cycle. Three viral proteins, gE, gI, and Us9, have been implicated in alphaherpesvirus anterograde spread in several animal models and neuron culture systems. We sought to better define the roles of gE, gI, and Us9 in herpes simplex virus type 1 (HSV-1) anterograde spread using a compartmentalized primary neuron culture system. We found that no anterograde spread occurred in the absence of gE or gI, indicating that these proteins are essential for HSV-1 anterograde spread. However, we did detect anterograde spread in the absence of Us9 using two independent Us9-deleted viruses. We confirmed the Us9 finding in different murine models of neuronal spread. We examined viral transport into the optic nerve and spread to the brain after retinal infection; the production of zosteriform disease after flank inoculation; and viral spread to the spinal cord after flank inoculation. In all models, anterograde spread occurred in the absence of Us9, although in some cases at reduced levels. This finding contrasts with gE- and gI-deleted viruses, which displayed no anterograde spread in any animal model. Thus, gE and gI are essential for HSV-1 anterograde spread, while Us9 is dispensable.
机译:顺行神经元扩散(即从神经元细胞体向轴突末端扩散)是α疱疹病毒生命周期的关键组成部分。在几种动物模型和神经元培养系统中,三种病毒蛋白gE,gI和Us9都与甲疱疹病毒顺行性传播有关。我们试图更好地定义gE,gI和Us9在使用隔间初级神经元培养系统的单纯疱疹病毒1型(HSV-1)顺行性传播中的作用。我们发现在没有gE或gI的情况下没有顺行扩散发生,表明这些蛋白质对于HSV-1顺行扩散至关重要。但是,我们确实使用两种独立的Us9缺失病毒在没有Us9的情况下检测到顺行扩散。我们在不同的神经元扩散鼠模型中证实了US9的发现。视网膜感染后,我们检查了病毒向视神经的运输并扩散到大脑。侧面接种后产生带状疱疹;并在侧面接种后病毒传播到脊髓。在所有模型中,尽管在某些情况下水平降低,但在没有Us9的情况下发生顺行扩散。这一发现与缺失gE和gI的病毒形成对比,后者在任何动物模型中均未显示顺行扩散。因此,gE和gI对于HSV-1顺行传播至关重要,而Us9则是可有可无的。

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