首页> 美国卫生研究院文献>Journal of Virology >Herpes simplex virus type 1 entry through a cascade of virus-cell interactions requires different roles of gD and gH in penetration.
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Herpes simplex virus type 1 entry through a cascade of virus-cell interactions requires different roles of gD and gH in penetration.

机译:通过级联的病毒-细胞相互作用进入1型单纯疱疹病毒需要gD和gH在渗透中发挥不同的作用。

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摘要

We examined the entry process of herpes simplex virus type 1 (HSV-1) by using infectious virus and previously characterized noninfectious viruses that can bind to cells but cannot penetrate as a result of inactivation of essential viral glycoprotein D (gD) or H (gH). After contact of infectious virus with the cell plasma membrane, discernible changes of the envelope and tegument could be seen by electron microscopy. Noninfectious virions were arrested at distinct steps in interactions with cells. Viruses inactivated by anti-gD neutralizing antibodies attached to cells but were arrested prior to initiation of a visible fusion bridge between the virus and cell. As judged from its increased sensitivity to elution, virus lacking gD was less stably bound to cells than was virus containing gD. Moreover, soluble gD could substantially reduce virus attachment when added to cells prior to or with the addition of virus. Virus inactivated by anti-gH neutralizing antibodies attached and could form a fusion bridge but did not show expansion of the fusion bridge or extensive rearrangement of the envelope and tegument. We propose a model for infectious entry of HSV-1 by a series of interactions between the virion envelope and the cell plasma membrane that trigger virion disassembly, membrane fusion, and capsid penetration. In this entry process, gD mediates a stable attachment that is likely required for penetration, and gH seems to participate in fusion initiation or expansion.
机译:我们通过使用传染性病毒检查了1型单纯疱疹病毒(HSV-1)的进入过程,该病毒先前具有特征性的非传染性病毒可以与细胞结合,但由于必需病毒糖蛋白D(gD)或H(gH )。感染性病毒与细胞质膜接触后,可以通过电子显微镜观察到包膜和外皮的明显变化。非感染性病毒粒子在与细胞相互作用的不同步骤被捕。被附着在细胞上的抗gD中和抗体灭活的病毒,但是在启动病毒和细胞之间的可见融合桥之前被阻止。从其对洗脱的敏感性增加中判断,缺乏gD的病毒与含有gD的病毒相比,与细胞的结合不稳定。此外,当在添加病毒之前或同时添加到细胞中时,可溶性gD可以大大减少病毒附着。被附着的抗gH中和抗体灭活的病毒可以形成融合桥,但未显示融合桥的扩展或包膜和外皮的广泛重排。我们提出了一种通过病毒粒子包膜和细胞质膜之间的一系列相互作用触发HSV-1感染进入的模型,该相互作用触发病毒粒子的拆卸,膜融合和衣壳穿透。在此进入过程中,gD介导了可能需要穿透的稳定附着,而gH似乎参与了融合的起始或扩展。

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