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ESCRT 机器中的 VPS4 组件在 HPV 感染进入和衣壳解体中发挥重要作用。

The VPS4 component of the ESCRT machinery plays an essential role in HPV infectious entry and capsid disassembly.

机构信息

Tumour Virology Laboratory, International Centre for Genetic Engineering and Biotechnology, Padriciano 99, Trieste, I-34149, Italy.

Department of Molecular Virology, Adam Mickiewicz University, Umultowska 89, Poznan, 61-614, Poland.

出版信息

Sci Rep. 2017 Mar 28;7:45159. doi: 10.1038/srep45159.

Abstract

Human Papillomavirus (HPV) infection involves multiple steps, from cell attachment, through endocytic trafficking towards the trans-Golgi network, and, ultimately, the entry into the nucleus during mitosis. An essential viral protein in infectious entry is the minor capsid protein L2, which engages different components of the endocytic sorting machinery during this process. The ESCRT machinery is one such component that seems to play an important role in the early stages of infection. Here we have analysed the role of specific ESCRT components in HPV infection, and we find an essential role for VPS4. Loss of VPS4 blocks infection with multiple PV types, suggesting an evolutionarily conserved critical step in infectious entry. Intriguingly, both L1 and L2 can interact with VPS4, and appear to be in complex with VPS4 during the early stages of virus infection. By using cell lines stably expressing a dominant-negative mutant form of VPS4, we also show that loss of VPS4 ATPase activity results in a marked delay in capsid uncoating, resulting in a defect in the endocytic transport of incoming PsVs. These results demonstrate that the ESCRT machinery, and in particular VPS4, plays a critical role in the early stages of PV infection.

摘要

人乳头瘤病毒(HPV)感染涉及多个步骤,从细胞附着,通过内吞作用向反式高尔基体网络,最终在有丝分裂期间进入细胞核。在传染性进入过程中,一种必不可少的病毒蛋白是次要衣壳蛋白 L2,它在这个过程中与内吞分选机制的不同成分结合。ESCRT 机制就是这样一种成分,它似乎在感染的早期阶段发挥重要作用。在这里,我们分析了特定 ESCRT 成分在 HPV 感染中的作用,发现 VPS4 是必不可少的。VPS4 的缺失会阻断多种 PV 类型的感染,这表明在感染进入过程中有一个进化上保守的关键步骤。有趣的是,L1 和 L2 都可以与 VPS4 相互作用,并且在病毒感染的早期阶段似乎与 VPS4 形成复合物。通过使用稳定表达 VPS4 显性负突变体的细胞系,我们还表明 VPS4 ATP 酶活性的丧失会导致衣壳脱壳明显延迟,从而导致内吞体 PsV 的运输缺陷。这些结果表明 ESCRT 机制,特别是 VPS4,在 HPV 感染的早期阶段发挥关键作用。

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