樱桃谷鸭IRF1介导的信号通路在宿主抗鸭坦布苏病毒中的作用

IF 1.4 3区 农林科学 Q4 IMMUNOLOGY
Xingdong Song , Tingting Zhang , Bin Xing , Jinchao Wang , Xinyu Zhai , Xiuyuan Wang , Runchun Miao , Tianxu Li , Liangmeng Wei
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引用次数: 0

摘要

中国是世界上鸭养殖、鸭肉和鸭蛋产量最大的国家。近年来,鸭坦布苏病毒(DTMUV)的出现和传播已成为减少鸭屠宰量的重要因素之一,严重危及我国鸭养殖业。对鸭先天免疫机制的深入研究,有助于探索治疗DTMUV感染的新模式。IRF1可诱导多种抗病毒免疫因子在动物机体内的表达,在先天免疫应答中发挥重要作用。在本研究中,我们使用干扰RNA敲低DEF细胞中的IRF1基因,然后用DTMUV感染细胞。我们通过实验发现,敲低IRF1可促进DTMUV早期复制,并导致几种主要模式识别受体(PRRs)、白细胞介素(IL)、干扰素(IFN)、抗病毒蛋白和MHC分子的表达下调,表明duirf1介导的信号通路在DTMUV诱导的宿主先天免疫中起着极其重要的作用。此外,我们构建了重组表达质粒pET32a(+)-duIRF1-His,最终制备了特异性较好的duIRF1多克隆抗体,希望为本实验室及本领域研究IRF1在先天免疫中的作用机制提供一种检测手段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of Cherry Valley duck IRF1 mediated signal pathway in host anti-duck Tembusu virus

China is the country with the largest amount of duck breeding as well as duck meat and egg production. In recent years, the emergence and spread of duck Tembusu virus (DTMUV) has become one of the important factors in reducing the amount of duck slaughter, which seriously endangers the duck breeding industry in our country. In-depth research on the mechanism of duck innate immunity facilitates the exploration of new models for the treatment of DTMUV infection. IRF1 can induce the expression of many antiviral immune factors in the animal organism and play an important role in the innate immune response. In this study, we used interfering RNA to knock down the IRF1 gene in DEF cells and then the cells were infected with DTMUV. We found that knockdown of IRF1 promoted DTMUV replication at an early stage and caused downregulation of the expression of several major pattern recognition receptors (PRRs), interleukins (IL), interferons (IFN), antiviral proteins, and MHC molecules by assay, showing that the duIRF1-mediated signaling pathway plays an extremely important role in DTMUV-induced host innate immunity. In addition, we constructed the recombinant expression plasmid pET32a(+)-duIRF1-His, and finally prepared the polyclonal antibody of duIRF1 with good specificity, hoping to provide a detection means for research on the mechanism of IRF1 in innate immunity in our laboratory and in this field.

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来源期刊
CiteScore
3.40
自引率
5.60%
发文量
79
审稿时长
70 days
期刊介绍: The journal reports basic, comparative and clinical immunology as they pertain to the animal species designated here: livestock, poultry, and fish species that are major food animals and companion animals such as cats, dogs, horses and camels, and wildlife species that act as reservoirs for food, companion or human infectious diseases, or as models for human disease. Rodent models of infectious diseases that are of importance in the animal species indicated above,when the disease requires a level of containment that is not readily available for larger animal experimentation (ABSL3), will be considered. Papers on rabbits, lizards, guinea pigs, badgers, armadillos, elephants, antelope, and buffalo will be reviewed if the research advances our fundamental understanding of immunology, or if they act as a reservoir of infectious disease for the primary animal species designated above, or for humans. Manuscripts employing other species will be reviewed if justified as fitting into the categories above. The following topics are appropriate: biology of cells and mechanisms of the immune system, immunochemistry, immunodeficiencies, immunodiagnosis, immunogenetics, immunopathology, immunology of infectious disease and tumors, immunoprophylaxis including vaccine development and delivery, immunological aspects of pregnancy including passive immunity, autoimmuity, neuroimmunology, and transplanatation immunology. Manuscripts that describe new genes and development of tools such as monoclonal antibodies are also of interest when part of a larger biological study. Studies employing extracts or constituents (plant extracts, feed additives or microbiome) must be sufficiently defined to be reproduced in other laboratories and also provide evidence for possible mechanisms and not simply show an effect on the immune system.
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