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组成型活性IRF7/IRF3融合蛋白完全保护猪免受口蹄疫侵害。

Constitutively Active IRF7/IRF3 Fusion Protein Completely Protects Swine against Foot-and-Mouth Disease.

作者信息

Ramírez-Carvajal Lisbeth, Diaz-San Segundo Fayna, Ramirez-Medina Elizabeth, Rodríguez Luis L, de Los Santos Teresa

机构信息

Foreign Animal Disease Research Unit, Agricultural Research Services, U.S. Department of Agriculture, Plum Island Animal Disease Center, Greenport, New York, USA Oak Ridge Institute for Science and Education, PIADC Research Participation Program, Oak Ridge, Tennessee, USA.

Foreign Animal Disease Research Unit, Agricultural Research Services, U.S. Department of Agriculture, Plum Island Animal Disease Center, Greenport, New York, USA Department of Pathobiology and Veterinary Science, CANR, University of Connecticut, Storrs, Connecticut, USA.

出版信息

J Virol. 2016 Sep 12;90(19):8809-21. doi: 10.1128/JVI.00800-16. Print 2016 Oct 1.

Abstract

UNLABELLED

Foot-and-mouth disease (FMD) remains one of the most devastating livestock diseases around the world. Several serotype-specific vaccine formulations exist, but they require about 5 to 7 days to induce protective immunity. Our previous studies have shown that a constitutively active fusion protein of porcine interferon (IFN) regulatory factors (IRF) 7 and 3 [IRF7/3(5D)] strongly induced type I IFN and antiviral genes in vitro and prevented mortality in an FMD mouse model when delivered with a replication-defective adenoviral vector [Ad5-poIRF7/3(5D)]. Here, we demonstrate that pigs treated with 10(8), 10(9), or 10(10) PFU of Ad5-poIRF7/3(5D) 24 h before FMDV challenge were fully protected from FMD clinical signs and did not develop viremia, virus shedding or antibodies against FMDV nonstructural proteins. Pigs treated with Ad5-poIRF7/3(5D) had higher levels of IFN and antiviral activity in serum, and upregulated expression of several IFN-stimulated genes in peripheral blood mononuclear cells, compared to pigs treated with Ad5-Blue vector control. Importantly, treatment of porcine cultured cells with Ad5-poIRF7/3(5D) inhibited the replication of all 7 FMDV serotypes. In vitro experiments using cultured embryonic fibroblasts derived from IFN receptor knockout mice suggested that the antiviral response induced by Ad5-poIRF7/3(5D) was dependent on type I and III IFN pathways; however, experiments with mice demonstrated that a functional type I IFN pathway mediates Ad5-poIRF7/3(5D) protection conferred in vivo Our studies demonstrate that inoculation with Ad5-poIRF7/3(5D) completely protects swine against FMD by inducing a strong type I IFN response and highlights its potential application to rapidly and effectively prevent FMDV replication and dissemination.

IMPORTANCE

Foot-and-mouth disease virus (FMDV) causes a fast-spreading disease that affects farm animals, with economically and socially devastating consequences. Our study shows that inoculation with a constitutively active transcription factor, namely, a fusion protein of porcine interferon (IFN) regulatory factors (IRF) 7 and 3 delivered by an adenovirus vector [Ad5-poIRF7/3(5D)], is a new effective treatment to prevent FMD in swine. Animals pretreated with Ad5-poIRF7/3(5D) 1 day before being exposed to FMDV were completely protected from viral replication and clinical disease. It is noteworthy that the doses of Ad5-poIRF7/3(5D) required for protection are lower than those previously reported for similar approaches using Ad5 vectors delivering type I, II, or III IFN, suggesting that this novel strategy would be economically appealing to counteract FMD. Our results also indicate that a dynamic interplay among different components of pigs' innate immune defenses allows potent antiviral effects after Ad5-poIF7/3(5D) administration.

摘要

未标记

口蹄疫(FMD)仍然是全球最具毁灭性的家畜疾病之一。现有几种血清型特异性疫苗制剂,但它们需要约5至7天才能诱导保护性免疫。我们之前的研究表明,猪干扰素(IFN)调节因子(IRF)7和3的组成型活性融合蛋白[IRF7/3(5D)]在体外强烈诱导I型IFN和抗病毒基因,并在与复制缺陷腺病毒载体[Ad5-poIRF7/3(5D)]一起递送时可防止口蹄疫小鼠模型死亡。在此,我们证明,在口蹄疫病毒攻击前24小时用10⁸、10⁹或10¹⁰ PFU的Ad5-poIRF7/3(5D)处理的猪完全免受口蹄疫临床症状的影响,并且未出现病毒血症、病毒脱落或针对口蹄疫病毒非结构蛋白的抗体。与用Ad5-蓝色载体对照处理的猪相比,用Ad5-poIRF7/3(5D)处理的猪血清中IFN和抗病毒活性水平更高,外周血单核细胞中几种IFN刺激基因的表达上调。重要的是,用Ad5-poIRF7/3(5D)处理猪培养细胞可抑制所有7种口蹄疫病毒血清型的复制。使用源自IFN受体敲除小鼠的培养胚胎成纤维细胞进行的体外实验表明,Ad5-poIRF7/3(5D)诱导的抗病毒反应依赖于I型和III型IFN途径;然而,小鼠实验表明,功能性I型IFN途径介导了Ad5-poIRF7/3(5D)在体内赋予的保护作用。我们的研究表明,接种Ad5-poIRF7/3(5D)可通过诱导强烈的I型IFN反应完全保护猪免受口蹄疫的侵害,并突出了其在快速有效预防口蹄疫病毒复制和传播方面的潜在应用。

重要性

口蹄疫病毒(FMDV)引起一种快速传播的疾病,影响家畜,具有经济和社会破坏性后果。我们的研究表明,接种一种组成型活性转录因子,即由腺病毒载体[Ad5-poIRF7/3(5D)]递送的猪干扰素(IFN)调节因子(IRF)7和3的融合蛋白,是预防猪口蹄疫的一种新的有效治疗方法。在暴露于口蹄疫病毒前1天用Ad5-poIRF7/3(5D)预处理的动物完全免受病毒复制和临床疾病的影响。值得注意的是,保护所需的Ad5-poIRF7/3(5D)剂量低于先前报道的使用递送I型、II型或III型IFN的Ad5载体的类似方法所需的剂量,这表明这种新策略在对抗口蹄疫方面在经济上具有吸引力。我们的结果还表明,猪先天免疫防御的不同成分之间的动态相互作用在给予Ad5-poIF7/3(5D)后产生强大的抗病毒作用。

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