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拥有强大力量的小英雄:痘苗病毒E3蛋白与I型干扰素反应的逃避

Small Hero with Great Powers: Vaccinia Virus E3 Protein and Evasion of the Type I IFN Response.

作者信息

Szczerba Mateusz, Subramanian Sambhavi, Trainor Kelly, McCaughan Megan, Kibler Karen V, Jacobs Bertram L

机构信息

Biodesign Center for Immunotherapy, Vaccines and Virotherapy, Arizona State University, Tempe, AZ 85281, USA.

School of Life Sciences, Arizona State University, Tempe, AZ 85281, USA.

出版信息

Biomedicines. 2022 Jan 22;10(2):235. doi: 10.3390/biomedicines10020235.

Abstract

Poxviridae have developed a plethora of strategies to evade innate and adaptive immunity. In this review, we focused on the vaccinia virus E3 protein, encoded by the gene. E3 is present within the subfamily (with the exception of the avipoxviruses and molluscum contagiosum virus) and displays pleiotropic effects on the innate immune system. Initial studies identified E3 as a double-stranded RNA (dsRNA)-binding protein (through its C terminus), able to inhibit the activation of protein kinase dependent on RNA (PKR) and the 2'5'-oligoadenylate synthetase (OAS)/RNase L pathway, rendering E3 a protein counteracting the type I interferon (IFN) system. In recent years, N-terminal mutants of E3 unable to bind to Z-form nucleic acids have been shown to induce the cellular death pathway necroptosis. This pathway was dependent on host IFN-inducible Z-DNA-binding protein 1 (ZBP1); full-length E3 is able to inhibit ZBP1-mediated necroptosis. Binding to what was identified as Z-RNA has emerged as a novel mechanism of counteracting the type I IFN system and has broadened our understanding of innate immunity against viral infections. This article gives an overview of the studies leading to our understanding of the vaccinia virus E3 protein function and its involvement in viral pathogenesis. Furthermore, a short summary of other viral systems is provided.

摘要

痘病毒科已经开发出大量策略来逃避先天性免疫和适应性免疫。在本综述中,我们重点关注了由该基因编码的痘苗病毒E3蛋白。E3存在于该亚科中(禽痘病毒和传染性软疣病毒除外),并对先天性免疫系统表现出多效性作用。初步研究将E3鉴定为一种双链RNA(dsRNA)结合蛋白(通过其C末端),能够抑制依赖RNA的蛋白激酶(PKR)和2'5'-寡腺苷酸合成酶(OAS)/RNase L途径的激活,使E3成为一种对抗I型干扰素(IFN)系统的蛋白。近年来,已证明无法与Z型核酸结合的E3 N端突变体可诱导细胞死亡途径坏死性凋亡。该途径依赖于宿主IFN诱导的Z-DNA结合蛋白1(ZBP1);全长E3能够抑制ZBP1介导的坏死性凋亡。与被鉴定为Z-RNA的物质结合已成为对抗I型IFN系统的一种新机制,并拓宽了我们对病毒感染先天性免疫的理解。本文概述了导致我们了解痘苗病毒E3蛋白功能及其在病毒发病机制中作用的研究。此外,还提供了其他病毒系统的简短总结。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d70/8869630/76dc9de580a1/biomedicines-10-00235-g001.jpg

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