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West Nile Virus Challenge Alters the Transcription Profiles of Innate Immune Genes in Rabbit Peripheral Blood Mononuclear Cells

机译:西尼罗河病毒挑战改变了兔外周血单个核细胞中固有免疫基因的转录谱。

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摘要

The peripheral innate immune response to West Nile virus (WNV) is crucial for control of virus spread to the central nervous system. Therefore, transcriptomes encoding the innate immune response proteins against WNV were investigated in peripheral blood mononuclear cells (PBMCs) of New Zealand White rabbits, a recently established novel rabbit model for WNV pathogenesis studies. PBMCs were challenged with an Australian WNV strain, WNVNSW2011, in vitro, and mRNA expression of selected immune response genes were quantified at 2-, 6-, 12-, and 24-h post-infection (pi) using qRT-PCR. Compared to mock-inoculated PBMCs, WNV-stimulated PBMCs expressed high levels of interferon (IFN) alpha (IFNA), gamma (IFNG), IL6, IL12, IL22, CXCL10, and pentraxin 3 (PTX3) mRNA. Likewise, TLR1, 2, 3, 4, 6, and 10 mRNA became up-regulated with the highest expression seen for TLR3, 4, and 6. TLRs-signaling downstream genes (MyD88, STAT1, TRAF3, IRF7, and IRF9) subsequently became up-regulated. The high expression of IFNs, TLR3, TLR4, TRAF3, STAT1, IRF7, and IRF9 are in accordance with antiviral activities, while expression of TNFA, HO1, iNOS, caspase 3, and caspase 9 transcripts suggests the involvement of oxidative stress and apoptosis in WNV-stimulated rabbit PBMCs, respectively. The level of WNVNSW2011 RNA increased at 24-h pi in PBMCs challenged with virus in vitro compared to input virus. The expression dynamics of selected genes were validated in PBMCs from rabbits experimentally infected with WNV in vivo. Higher expression of IFNA, IFN beta (IFNB), IFNG, TNFA, IL6, IL22, PTX3, TLR3 and TLR4, IRF7, IRF9, STST1, TRAF3, caspase 3, and caspase 9 were seen in PBMCs from WNV-infected rabbits on day 3 post-intradermal virus inoculation compared to PBMCs from uninfected control rabbits. This study highlights the array of cytokines and TLRs involved in the host innate immune response to WNV in the rabbit leukocytes and suggests that these cells may be a useful in vitro model for WNV infection study.
机译:对西尼罗河病毒(WNV)的外围先天免疫反应对于控制病毒传播到中枢神经系统至关重要。因此,在新西兰白兔的外周血单核细胞(PBMC)中研究了编码针对WNV的先天免疫应答蛋白的转录组,这是最近建立的用于WNV发病机制研究的新型兔模型。 PBMC在体外用澳大利亚WNV株WNVNSW2011攻击,并使用qRT-PCR在感染后2、6、12和24小时定量选择的免疫应答基因的mRNA表达。与模拟接种的PBMC相比,WNV刺激的PBMC表达高水平的干扰素(IFN)α(IFNA),γ(IFNG),IL6,IL12,IL22,CXCL10和pentraxin 3(PTX3)mRNA。同样,TLR1、2、3、4、6和10 mRNA也被上调,其中TLR3、4和6的表达最高。随后,TLR信号下游基因(MyD88,STAT1,TRAF3,IRF7和IRF9)发出信号。上调了。 IFN,TLR3,TLR4,TRAF3,STAT1,IRF7和IRF9的高表达符合抗病毒活性,而TNFA,HO1,iNOS,caspase 3和caspase 9转录物的表达表明氧化应激和细胞凋亡WNV刺激的兔PBMC。与输入病毒相比,在体外用病毒攻击的PBMC中,在感染后24小时,WNVNSW2011 RNA的水平增加。在体内实验性感染WNV的兔子的PBMC中验证了所选基因的表达动态。当天在WNV感染的兔子的PBMC中观察到IFNA,IFNβ(IFNB),IFNG,TNFA,IL6,IL22,PTX3,TLR3和TLR4,IRF7,IRF9,STST1,TRAF3,胱天蛋白酶3和胱天蛋白酶9的高表达与未感染对照兔的PBMC相比,皮内接种了3种疫苗。这项研究强调了兔白细胞中宿主对WNV的固有免疫反应中涉及的细胞因子和TLR的排列,并暗示这些细胞可能是WNV感染研究的有用的体外模型。

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