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斑马鱼 ISG15 对 RNA 和 DNA 病毒表现出强大的抗病毒活性,并调节干扰素反应。

Zebrafish ISG15 exerts a strong antiviral activity against RNA and DNA viruses and regulates the interferon response.

机构信息

INRA, Virologie et Immunologie Moléculaires, Jouy-en-Josas, France.

出版信息

J Virol. 2013 Sep;87(18):10025-36. doi: 10.1128/JVI.01294-12. Epub 2013 Jul 3.

Abstract

ISG15, a 15-kDa interferon-induced protein that participates in antiviral defenses of mammals, is highly conserved among vertebrates. In fish, as in mammals, viral infection and interferon treatment induce isg15 expression. The two ubiquitin-like domains of ISG15 and the presence of a consensus LRLRGG sequence in the C-terminal region, which is required for the covalent conjugation to a substrate protein, are also conserved in fish. Our data demonstrate that overexpression of zebrafish ISG15 (zf-ISG15) in EPC cells is sufficient to inhibit viral infection by RNA viruses belonging to the genera Novirhabdovirus and Birnavirus and by DNA viruses of the genus Iridovirus. In coexpression experiments with IHNV proteins, we demonstrate specific ISGylation of phosphoprotein and nonvirion protein. Mutation of the glycine residues in the consensus LRLRGG motif abolishes zf-ISG15 conjugation to these proteins and the cellular protection against viral infection, thus connecting ISGylation and ISG15-dependent viral restriction. Additionally, zf-ISG15 overexpression triggers induction of the rig-I and viperin genes as well as, to a lesser extent, the IFN gene. Overall, our data demonstrate the antiviral effect of a fish ISG15 protein, revealing the conservation among vertebrates of an ISGylation mechanism likely directed against viruses. Furthermore, our findings indicate that zf-ISG15 affects the IFN system at several levels, and its study shall shed further light on the evolution of the complex regulation of the innate antiviral response in vertebrate cells.

摘要

ISG15 是一种 15kDa 的干扰素诱导蛋白,参与哺乳动物的抗病毒防御,在脊椎动物中高度保守。在鱼类中,与哺乳动物一样,病毒感染和干扰素处理诱导 isg15 表达。ISG15 的两个泛素样结构域和 C 末端区域中存在一个共识的 LRLRGG 序列,该序列是与底物蛋白发生共价连接所必需的,在鱼类中也是保守的。我们的数据表明,斑马鱼 ISG15(zf-ISG15)在 EPC 细胞中的过表达足以抑制属于 Novirhabdovirus 和 Birnavirus 属的 RNA 病毒以及属于 Iridovirus 属的 DNA 病毒的感染。在与 IHNV 蛋白的共表达实验中,我们证明了磷酸蛋白和非病毒蛋白的特异性 ISGylation。在共识的 LRLRGG 基序中的甘氨酸残基发生突变会破坏 zf-ISG15 与这些蛋白的结合以及对病毒感染的细胞保护,从而将 ISGylation 和 ISG15 依赖性病毒限制联系起来。此外,zf-ISG15 的过表达会触发 rig-I 和 viperin 基因的诱导,以及 IFN 基因的较小程度诱导。总的来说,我们的数据证明了鱼类 ISG15 蛋白的抗病毒作用,揭示了一种可能针对病毒的 ISGylation 机制在脊椎动物中的保守性。此外,我们的发现表明,zf-ISG15 在几个层面上影响 IFN 系统,对其研究将进一步阐明脊椎动物细胞中先天抗病毒反应的复杂调控的进化。

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