宿主vps1 - vta1复合体和病毒核心蛋白Ac93的协同作用促进了加州亲笔病多核多角体病毒出芽粒子的进入。

IF 4 2区 医学 Q2 VIROLOGY
Xiaorong Yue, Ning Ji, Yixiang Ma, Qianlong Yu, Lisha Bai, Zhaofei Li
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引用次数: 0

摘要

运输所需的内体分选复合体(ESCRT)是一种介导膜断裂的蛋白质机器。在腔内囊泡(ILV)形成过程中,ESCRT-0靶向并招募ESCRT-I/-II形成膜内陷,而ESCRT-III与AAA atp酶Vps4及其辅助因子Vta1协同催化膜裂变。最近,ESCRT-I/-III和Vps4被发现参与了加州签名杆状病毒多核多角体病毒(AcMNPV)的进入。然而,其他ESCRT成分的必要性以及病毒蛋白和ESCRT在调节病毒进入中的相互作用仍然难以捉摸。在此,我们鉴定了夜蛾的ESCRT-0 (Hse1和Vps27)、ESCRT-II (Vps22、Vps25和Vps36)和Vta1。在Sf9细胞中,RNAi缺失Vta1而不缺失ESCRT-0或ESCRT-II的组分可显著降低芽化病毒(BV)的产生。定量PCR和共聚焦显微镜分析表明,BV的内化和内体运输需要Vta1。在感染后期,虽然Vps4和Vta1都分布在细胞核和质膜上,但Vta1的消耗并不影响BV的释放。进一步分析发现,14种BV包膜蛋白中有7种(Ac75、Ac93、E25、F-like、P33、P48和vUbiquitin)与Vps4和Vta1相互作用。有趣的是,Ac93采用与ESCRT-III蛋白相似的模式,通过其c端MIT相互作用基序(MIM1)与Vps4和Vta1的微管相互作用和运输(MIT)结构域相互作用,并且这种相互作用是BV内化所必需的。总之,我们的研究强调了vpv4 - vta1和Ac93,以及其他BV包膜蛋白在促进AcMNPV进入中的协同作用。重要意义运输所需的内体分选复合体(ESCRT)系统参与多种DNA和RNA病毒的进入。然而,病毒蛋白和escrt在促进病毒内吞作用中的相互作用在很大程度上仍然未知。本研究发现ESCRT早期作用因子ESCRT-0/-II对于加利福尼亚多核多角体病毒(AcMNPV)感染性芽化病毒(BV)的产生并不是必需的。相比之下,Vps4辅因子Vta1是BV进入而不是出口所必需的。鉴定出几个核心或必需的BV包膜蛋白与Vps4和Vta1相互作用。其中Ac93在连接其他病毒蛋白中起核心作用,并模仿ESCRT-III蛋白与Vps4-Vta1相互作用,促进BV病毒粒子的进入。这些研究为病毒蛋白和escrt协同调节大包膜DNA病毒的进入提供了证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coordination of the host Vps4-Vta1 complex and the viral core protein Ac93 facilitates entry of Autographa californica multiple nucleopolyhedrovirus budded virions.

The endosomal sorting complex required for transport (ESCRT) is a protein machine mediating membrane scission. In intraluminal vesicle (ILV) formation, ESCRT-0 targets cargoes and recruits ESCRT-I/-II to create membrane invagination, whereas ESCRT-III coordinates with the AAA ATPase Vps4 and its cofactor Vta1 to catalyze the membrane fission. Recently, ESCRT-I/-III and Vps4 were found to be involved in the entry of the baculovirus Autographa californica multiple nucleopolyhedrovirus (AcMNPV). However, the necessity of other ESCRT components and the interplay of viral proteins and ESCRTs in regulating the virus entry remain elusive. Here, we identified ESCRT-0 (Hse1 and Vps27), ESCRT-II (Vps22, Vps25, and Vps36), and Vta1 of Spodoptera frugiperda. RNAi depletion of Vta1 but not the components of ESCRT-0 or ESCRT-II in Sf9 cells significantly reduced budded virus (BV) production. Quantitative PCR together with confocal microscopy analyses indicated that Vta1 was required for internalization and endosomal trafficking of BV. In the late phase of infection, although Vps4 and Vta1 were both distributed to the nucleus and at the plasma membrane, depletion of Vta1 did not affect BV release. Further analysis revealed that 7 of 14 BV envelope proteins (Ac75, Ac93, E25, F-like, P33, P48, and vUbiquitin) interacted with Vps4 and Vta1. Intriguingly, Ac93 adopted a similar mode as ESCRT-III proteins to interact with the microtubule-interacting and transport (MIT) domains of Vps4 and Vta1 via its C-terminal MIT-interacting motifs (MIM1), and the interactions were necessary for BV internalization. Together, our studies highlight the coordination of Vps4-Vta1 and Ac93, and probably other BV envelope proteins, in facilitating entry of AcMNPV.IMPORTANCEThe endosomal sorting complex required for transport (ESCRT) system is involved in the entry of diverse DNA and RNA viruses. However, the interplay of viral proteins and ESCRTs in promoting virus endocytosis remains largely unknown. Here, we found that the ESCRT early acting factors ESCRT-0/-II were not necessary for infectious budded virus (BV) production of Autographa californica multiple nucleopolyhedrovirus (AcMNPV). In contrast, the Vps4 cofactor Vta1 was required for entry but not egress of BV. Several core or essential BV envelope proteins were identified to interact with Vps4 and Vta1. Among them, Ac93 plays a central role in connecting other viral proteins and mimics ESCRT-III proteins to interact with Vps4-Vta1, facilitating entry of BV virions. These studies provide evidence for the coordination of viral proteins and ESCRTs in regulating entry of large enveloped DNA viruses.

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来源期刊
Journal of Virology
Journal of Virology 医学-病毒学
CiteScore
10.10
自引率
7.40%
发文量
906
审稿时长
1 months
期刊介绍: Journal of Virology (JVI) explores the nature of the viruses of animals, archaea, bacteria, fungi, plants, and protozoa. We welcome papers on virion structure and assembly, viral genome replication and regulation of gene expression, genetic diversity and evolution, virus-cell interactions, cellular responses to infection, transformation and oncogenesis, gene delivery, viral pathogenesis and immunity, and vaccines and antiviral agents.
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