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首页> 外文期刊>Veterinary Microbiology >Proteomics reveals the effect of type I interferon on the pathogenicity of duck hepatitis A virus genotype 3 in Pekin ducks
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Proteomics reveals the effect of type I interferon on the pathogenicity of duck hepatitis A virus genotype 3 in Pekin ducks

机译:蛋白质组学揭示了I型干扰素对北瓜鸭病毒基因型3的致病性的影响

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Duck hepatitis A virus genotypes 3 (DHAV-3) has become the most prevalent pathogen of duck viral hepatitis (DVH) in Asian duck industry in recent years. Previous studies on the pathogenic mechanism of DHAV-3 mainly focused on examine host gene expression levels. However, the study about host protein expression levels has not been reported. For this, proteomics analysis on livers of infected 7-day-old Pekin ducks with DHAV-3 112803 strain was performed to screen differentially expressed proteins. A total of 3,385 proteins were identified, and we found 39 proteins in the challenged group (CH) were significantly up-regulated and 15 proteins were significantly down-regulated in comparison with control group (CON). GO results showed that 9 of the top 20 GO terms were involved in type I interferon regulation, and the KEGG pathway enrichment results showed that innate immune responses were significantly enriched, such as RIG-1-like, Toll-like and NOD-like receptor signaling pathways. Notably, interaction between 11 up-regulation proteins promoted interferon-induced protein synthesis and supported viral genome replication, which could aggravate inflammatory response and liver damage. These findings, together with RT-qPCR verification of related genes, support the view that the type I interferon may play an extremely important role in the pathogenic mechanism of DHAV-3.
机译:近年来,鸭丙型肝炎病毒基因型3(DHAV-3)已成为亚洲鸭业中鸭病毒性肝炎(DVH)最普遍的病原体。以前关于DHAV-3的致病机制的研究主要集中在检查宿主基因表达水平。然而,尚未报告关于宿主蛋白表达水平的研究。为此,进行了对具有DHAV-3 112803菌株的感染7天龄皮鸭的蛋白质组学分析,对筛选差异表达蛋白质。鉴定了总共3,385个蛋白质,我们发现攻击基团(CH)中的39个蛋白质显着上调,与对照组(CON)相比,15个蛋白质显着下调。 GO结果表明,前20型GO术语中有9型型干扰素调节,并且Kegg途径浓缩结果表明,先天性免疫应答显着富集,如钻石1状,造成的沟槽和点状和点状受体信号通路。值得注意的是,11个上调蛋白之间的相互作用促进了干扰素诱导的蛋白质合成和支持的病毒基因组复制,这可能会加剧炎症反应和肝损伤。这些发现与RT-QPCR验证相关基因,支持I型干扰素可能在DHAV-3的致病机制中发挥极其重要的作用。

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