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神经坏死病毒囊膜糖蛋白 Nectin1 是在病毒生命周期早期参与赤点石斑鱼神经坏死病毒附着和进入宿主细胞的关键宿主因子。

Nectin1 is a pivotal host factor involved in attachment and entry of red-spotted grouper nervous necrosis virus in the early stages of the viral life cycle.

机构信息

Laboratory of Pathology and Immunology of Aquatic Animals, Key Laboratory of Mariculture, Ministry of Education, Ocean University of China, Qingdao, China.

Laboratory for Marine Fisheries Science and Food Production Processes, Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.

出版信息

J Virol. 2024 Sep 17;98(9):e0090124. doi: 10.1128/jvi.00901-24. Epub 2024 Aug 28.

DOI:10.1128/jvi.00901-24
PMID:39194240
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11406929/
Abstract

Nervous necrosis virus (NNV) is a highly neurotropic virus that poses a persistent threat to the survival of multiple fish species. However, its inimitable neuropathogenesis remains largely elusive. To rummage potential partners germane to the nervous system, we investigated the interaction between red-spotted grouper NNV (RGNNV) and grouper brain by immunoprecipitation coupled with mass spectrometry and discerned Nectin1 as a novel host factor subtly involved in viral early invasion events. Nectin1 was abundant in neural tissues and implicated in the inception of tunnel nanotubes triggered by RGNNV. Its overexpression not only dramatically potentiated the replication dynamics of RGNNV in susceptible cells, but also empowered non-sensitive cells to expeditiously capture free virions within 2 min. This potency was impervious to low temperatures but was dose-dependently suppressed by soluble protein or specific antibody of Nectin1 ectodomain, indicating Nectin1 as an attachment receptor for RGNNV. Mechanistically, efficient hijacking of virions by Nectin1 strictly depended on intricate linkages to different modules of viral capsid protein, especially the direct binding between the IgC1 loop and P-domain. More strikingly, despite abortive proliferation in Nectin1-reconstructed CHSE-214 cells, a non-sensitive cell, RGNNV could gain access to the intracellular compartment by capitalizing on Nectin1, thereby inducing canonical cytoplasmic vacuolation. Altogether, our findings delineate a candidate entrance for RGNNV infiltration into the nervous system, which may shed unprecedented insights into the exploration and elucidation of RGNNV pathogenesis.IMPORTANCENervous necrosis virus (NNV) is one of the most virulent pathogens in the aquaculture industry, which inflicts catastrophic damage to ecology, environment, and economy annually around the world. Nevertheless, its idiosyncratic invasion and latency mechanisms pose enormous hardships to epidemic prevention and control. In this study, deploying grouper brain as a natural screening library, a single-transmembrane glycoprotein, Nectin1, was first identified as an emergent functional receptor for red-spotted grouper NNV (RGNNV) that widely allocated in nervous tissues and directly interacted with viral capsid protein through distinct Ig-like loops to bridge virus-host crosstalk, apprehend free virions, and concomitantly propel viral entry. Our findings illuminate the critical role of Nectin1 in RGNNV attachment and entry and provide a potential target for future clinical intervention strategies in the therapeutic race against RGNNV.

摘要

神经坏死病毒(NNV)是一种高度嗜神经病毒,对多种鱼类的生存构成持续威胁。然而,其独特的神经发病机制在很大程度上仍难以捉摸。为了寻找与神经系统相关的潜在伙伴,我们通过免疫沉淀结合质谱法研究了红鳍东方鲀 NNV(RGNNV)与东方鲀脑之间的相互作用,并发现 Nectin1 是一种新型宿主因子,它微妙地参与了病毒早期入侵事件。Nectin1 在神经组织中含量丰富,与 RGNNV 触发的隧道纳米管的形成有关。其过表达不仅显著增强了易感细胞中 RGNNV 的复制动力学,而且使非敏感细胞能够在 2 分钟内迅速捕获游离病毒。这种增强作用不受低温影响,但可溶性蛋白或 Nectin1 外域的特异性抗体呈剂量依赖性地抑制,表明 Nectin1 是 RGNNV 的附着受体。从机制上讲,Nectin1 对病毒粒子的有效劫持严格依赖于与病毒衣壳蛋白不同模块的复杂联系,特别是 IgC1 环与 P 结构域之间的直接结合。更引人注目的是,尽管在非敏感细胞 CHSE-214 中构建的 Nectin1 中 RGNNV 增殖失败,但 RGNNV 可以利用 Nectin1 进入细胞内区室,从而诱导典型的细胞质空泡化。总的来说,我们的研究结果描绘了 RGNNV 渗透到神经系统的候选入口,这可能为 RGNNV 发病机制的探索和阐明提供前所未有的见解。

神经坏死病毒(NNV)是水产养殖业中最具毒性的病原体之一,每年在全球范围内给生态、环境和经济造成巨大破坏。然而,其独特的入侵和潜伏机制给疫情防控带来了巨大的困难。在这项研究中,我们将东方鲀脑作为天然筛选文库,首次鉴定出一种单一跨膜糖蛋白 Nectin1 是红鳍东方鲀 NNV(RGNNV)的新兴功能受体,该蛋白广泛分布于神经组织中,并通过独特的 Ig 样环与病毒衣壳蛋白直接相互作用,架起病毒-宿主的交流桥梁,捕捉游离病毒,并同时推动病毒进入。我们的研究结果阐明了 Nectin1 在 RGNNV 附着和进入中的关键作用,并为未来针对 RGNNV 的临床干预策略提供了一个潜在的治疗靶点。