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锌指蛋白 ZFP36L1 通过 5'-3' XRN1 和 3'-5' RNA-外切体 RNA 降解途径抑制黄病毒感染。

Zinc Finger Protein ZFP36L1 Inhibits Flavivirus Infection by both 5'-3' XRN1 and 3'-5' RNA-Exosome RNA Decay Pathways.

机构信息

Graduate Institute of Microbiology, National Taiwan University, Taipei, Taiwan.

Institute of Biomedical Sciences, Academia Sinica, Taipei, Taiwan.

出版信息

J Virol. 2022 Jan 12;96(1):e0166521. doi: 10.1128/JVI.01665-21. Epub 2021 Oct 13.

Abstract

Zinc-finger protein 36, CCCH type-like 1 (ZFP36L1), containing tandem CCCH-type zinc-finger motifs with an RNA-binding property, plays an important role in cellular RNA metabolism mainly by RNA decay pathways. Recently, we demonstrated that human ZFP36L1 has potent antiviral activity against influenza A virus infection. However, its role in the host defense response against flaviviruses has not been addressed. Here, we demonstrate that ZFP36L1 functions as a host innate defender against flaviviruses, including Japanese encephalitis virus (JEV) and dengue virus (DENV). Overexpression of ZFP36L1 reduced JEV and DENV infection, and ZFP36L1 knockdown enhanced viral replication. ZFP36L1 destabilized the JEV genome by targeting and degrading viral RNA mediated by both 5'-3' XRN1 and 3'-5' RNA-exosome RNA decay pathways. Mutation in both zinc-finger motifs of ZFP36L1 disrupted RNA-binding and antiviral activity. Furthermore, the viral RNA sequences specifically recognized by ZFP36L1 were mapped to the 3'-untranslated region of the JEV genome with the AU-rich element (AUUUA) motif. We extend the function of ZFP36L1 to host antiviral defense by directly binding and destabilizing the viral genome via recruiting cellular mRNA decay machineries. Cellular RNA-binding proteins are among the first lines of defense against various viruses, particularly RNA viruses. ZFP36L1 belongs to the CCCH-type zinc-finger protein family and has RNA-binding activity; it has been reported to bind directly to the AU-rich elements (AREs) of a subset of cellular mRNAs and then lead to mRNA decay by recruiting mRNA-degrading enzymes. However, the antiviral potential of ZFP36L1 against flaviviruses has not yet been fully demonstrated. Here, we reveal the antiviral potential of human ZFP36L1 against Japanese encephalitis virus (JEV) and dengue virus (DENV). ZFP36L1 specifically targeted the ARE motif within viral RNA and triggered the degradation of viral RNA transcripts via cellular degrading enzymes 5'-3' XRN1 and 3'-5' RNA exosome. These findings provide mechanistic insights into how human ZFP36L1 serves as a host antiviral factor to restrict flavivirus replication.

摘要

锌指蛋白 36,CCCH 型样 1(ZFP36L1),含有串联的 CCCH 型锌指基序,具有 RNA 结合特性,主要通过 RNA 降解途径在细胞 RNA 代谢中发挥重要作用。最近,我们证明人类 ZFP36L1 对甲型流感病毒感染具有有效的抗病毒活性。然而,其在宿主防御对黄病毒的反应中的作用尚未得到解决。在这里,我们证明 ZFP36L1 是一种针对黄病毒的宿主先天防御因子,包括日本脑炎病毒(JEV)和登革热病毒(DENV)。ZFP36L1 的过表达减少了 JEV 和 DENV 的感染,而 ZFP36L1 的敲低增强了病毒的复制。ZFP36L1 通过靶向和降解由 5'-3' XRN1 和 3'-5' RNA 外切体 RNA 降解途径介导的病毒 RNA,使 JEV 基因组不稳定。ZFP36L1 的两个锌指基序的突变破坏了 RNA 结合和抗病毒活性。此外,ZFP36L1 特异性识别的病毒 RNA 序列被映射到 JEV 基因组的 3'-非翻译区,具有富含 AU 的元件(AUUUA)基序。我们通过直接结合和通过招募细胞 mRNA 降解机制使病毒基因组不稳定,将 ZFP36L1 的功能扩展到宿主抗病毒防御。细胞 RNA 结合蛋白是抵御各种病毒,特别是 RNA 病毒的第一道防线。ZFP36L1 属于 CCCH 型锌指蛋白家族,具有 RNA 结合活性;据报道,它可以直接与一组细胞 mRNA 的富含 AU 的元件(AREs)结合,然后通过招募 mRNA 降解酶导致 mRNA 降解。然而,ZFP36L1 对黄病毒的抗病毒潜力尚未得到充分证明。在这里,我们揭示了人类 ZFP36L1 对日本脑炎病毒(JEV)和登革热病毒(DENV)的抗病毒潜力。ZFP36L1 特异性靶向病毒 RNA 中的 ARE 基序,并通过细胞降解酶 5'-3' XRN1 和 3'-5' RNA 外切体触发病毒 RNA 转录本的降解。这些发现为人类 ZFP36L1 作为宿主抗病毒因子限制黄病毒复制提供了机制上的见解。

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