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hnRNP K 是一种新型的内部核糖体进入位点转录因子,可负调控口蹄疫病毒的翻译和复制,并且可被病毒 3C 蛋白酶拮抗。

hnRNP K Is a Novel Internal Ribosomal Entry Site-Transacting Factor That Negatively Regulates Foot-and-Mouth Disease Virus Translation and Replication and Is Antagonized by Viral 3C Protease.

机构信息

Division of Livestock Infectious Diseases, State Key Laboratory of Veterinary Biotechnology, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Harbin, People's Republic of China.

Division of Livestock Infectious Diseases, State Key Laboratory of Veterinary Biotechnology, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Harbin, People's Republic of China

出版信息

J Virol. 2020 Aug 17;94(17). doi: 10.1128/JVI.00803-20.

Abstract

Cap-independent translation initiation on picornavirus mRNAs is mediated by an internal ribosomal entry site (IRES) in the 5' untranslated region. The regulation of internal initiation requires the interaction of IRES-transacting factors (ITAFs) with the IRES. In this study, we identified a novel ITAF, heterogeneous nuclear ribonucleoprotein K (hnRNP K), which negatively regulates foot-and-mouth disease virus (FMDV) translation and viral replication. Further investigation revealed that the KH2 and KH3 domains of hnRNP K directly bind to domains II, III, and IV of the FMDV IRES, resulting in the inhibition of IRES-mediated translation by interfering with the recognition of another positive ITAF, polypyrimidine tract-binding protein (PTB). Conversely, hnRNP K-mediated inhibition was antagonized by the viral 3C protease through the cleavage of hnRNP K at the Glu-364 residue during FMDV infection. Interestingly, the N-terminal cleavage product, hnRNP K, retained partial inhibitory effects on IRES activity, whereas the C-terminal cleavage product, hnRNP K, became a positive regulator of FMDV replication. Our findings expand the current understanding of virus-host interactions concerning viral recruitment and the modulation of ITAFs, providing new insights into translational control during viral infection. The translation of picornaviral genome RNA mediated by the internal ribosomal entry site (IRES) is a crucial step for virus infections. Virus-host interactions play a critical role in the regulation of IRES-dependent translation, but the regulatory mechanism remains largely unknown. In this study, we identified an ITAF, hnRNP K, that negatively regulates FMDV replication by inhibiting viral IRES-mediated translation. In addition, we describe a novel translational regulation mechanism involving the proteolytic cleavage of hnRNP K by FMDV protease 3C. The cleavage of hnRNP K yields two cleavage products with opposite functions: the cleavage product hnRNP K retains a partial inhibitory effect on IRES activity, and the cleavage product hnRNP K becomes a positive regulator of FMDV replication. Our findings shed light on the effect of a novel ITAF on the translational regulation of picornavirus and provide new insights into translational control during viral infection.

摘要

帽依赖性翻译起始于正呼肠孤病毒 mRNA 是由一个内部核糖体进入位点 (IRES) 在 5'非翻译区介导的。内部起始的调节需要 IRES 转译因子 (ITAFs) 与 IRES 的相互作用。在这项研究中,我们鉴定了一种新的 ITAF,异质核核糖核蛋白 K (hnRNP K),它负调控口蹄疫病毒 (FMDV) 翻译和病毒复制。进一步的研究表明,hnRNP K 的 KH2 和 KH3 结构域直接与 FMDV IRES 的 II、III 和 IV 结构域结合,通过干扰另一个阳性 ITAF 多嘧啶 tract 结合蛋白 (PTB) 的识别,抑制 IRES 介导的翻译。相反,hnRNP K 介导的抑制作用被病毒 3C 蛋白酶通过在 FMDV 感染过程中 Glu-364 残基的切割而拮抗。有趣的是,hnRNP K 的 N 端切割产物 hnRNP K 对 IRES 活性仍有部分抑制作用,而 C 端切割产物 hnRNP K 则成为 FMDV 复制的正调节剂。我们的发现扩展了病毒-宿主相互作用的现有认识,包括病毒的招募和 ITAFs 的调节,为病毒感染过程中的翻译控制提供了新的见解。内部核糖体进入位点 (IRES) 介导的正呼肠孤病毒基因组 RNA 的翻译是病毒感染的关键步骤。病毒-宿主相互作用在调节 IRES 依赖的翻译中起着关键作用,但调节机制在很大程度上仍然未知。在这项研究中,我们鉴定了一种 ITAF,hnRNP K,它通过抑制病毒 IRES 介导的翻译来负调控 FMDV 复制。此外,我们描述了一种新的翻译调节机制,涉及 FMDV 蛋白酶 3C 对 hnRNP K 的蛋白水解切割。hnRNP K 的切割产生了两种具有相反功能的切割产物:切割产物 hnRNP K 对 IRES 活性保留部分抑制作用,而切割产物 hnRNP K 成为 FMDV 复制的正调节剂。我们的发现揭示了一种新的 ITAF 对正呼肠孤病毒翻译调节的影响,并为病毒感染过程中的翻译控制提供了新的见解。

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8
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Front Oncol. 2015 Oct 20;5:233. doi: 10.3389/fonc.2015.00233. eCollection 2015.
9
Intrinsic host restrictions to HIV-1 and mechanisms of viral escape.
Nat Immunol. 2015 Jun;16(6):546-53. doi: 10.1038/ni.3156.
10
Heterogeneous Nuclear Ribonucleoprotein M Facilitates Enterovirus Infection.
J Virol. 2015 Jul;89(14):7064-78. doi: 10.1128/JVI.02977-14.

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