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In vivo screening of zebrafish microRNA responses to bacterial infection and their possible roles in regulating immune response genes after lipopolysaccharide stimulation

机译:斑马鱼对细菌感染的微小RNA反应的体内筛选及其在脂多糖刺激后调节免疫反应基因中的可能作用

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Micro (mi)RNAs are abundant small noncoding RNAs found in plants and animals, the regulatory functions of which are not fully understood in fish. To identify potential miRNAs, we screened an miRNA microarray with total RNA from zebrafish infected with Vibrio harveyi and another from uninfected zebrafish. Six miRNAs were obtained from the microarray screening. We studied miRNA expression patterns of 2 miRNAs (miR-122 and miR-194) after bacterial infection of transgenic zebrafish (containing tilapia hepcidin (TH)2-3) and non-transgenic zebrafish from which the 2 miRNAs were obtained from the microarray experiment. The results indicated that miR-122 and miR-194 were higher in PBS-injected zebrafish compared with TH2-3 zebrafish or wild-type (WT) zebrafish after V. harveyi infection. Overexpression of miRNAs (miR-122, miR-192, and miR-194a) was seen in zebrafish liver (ZFL) cells after lipopolysaccharide (LPS) treatment and in untreated fish. Our results showed that after 24 h of doxycycline treatment without LPS stimulation, interleukin (IL)-22, lysozyme, toll-like receptor (TLR)1, TLR3, TLR4a, and tumor necrosis factor (TNF)- alpha gene expressions were, respectively, upregulated by ~14-, 22-, 2.2-, 13-, 200-, and 38-fold in miR-122-transfected compared with non-transfected (WT) ZFL cells. In cells transfected with miR-192 and treated with LPS after 8-12 h, IL-22, lysozyme, TLR1, TLR3, TLR4a, and TNF- alpha expressions significantly differed between WT and miR-192-overexpressing ZFL cells. However, we observed significantly higher IL-22 expression levels after 12 h of LPS treatment in miR-192-transfected ZFL cells compared with non-transfected cells. In contrast, IL-22, lysozyme, and TNF- alpha were markedly upregulated (>100-fold) after miR-194a transfection and overexpression in ZFL cells and treatment with LPS. Our cloning and expression analyses indicated that miR-122, miR-192, and miR-194a play important roles in zebrafish immunology.
机译:微小(mi)RNA是在动植物中发现的大量小型非编码RNA,其调控功能在鱼类中尚不完全清楚。为了鉴定潜在的miRNA,我们筛选了一个miRNA芯片,该芯片具有被哈维弧菌感染的斑马鱼和未被感染的斑马鱼感染的总RNA的总RNA。从微阵列筛选中获得了六个miRNA。我们研究了细菌感染转基因斑马鱼(含罗非鱼hepcidin(TH)2-3)和非转基因斑马鱼细菌感染后2种miRNA(miR-122和miR-194)的miRNA表达模式,从微阵列实验中获得了2种miRNA 。结果表明,在哈维氏弧菌感染后,PBS注射的斑马鱼中的miR-122和miR-194高于TH2-3斑马鱼或野生型(WT)斑马鱼。在脂多糖(LPS)处理后的斑马鱼肝脏(ZFL)细胞和未处理的鱼类中,miRNA(miR-122,miR-192和miR-194a)的过度表达。我们的结果表明,在没有LPS刺激的强力霉素治疗24小时后,白介素(IL)-22,溶菌酶,toll​​样受体(TLR)1,TLR3,TLR4a和肿瘤坏死因子(TNF)-α基因表达分别与未转染(WT)的ZFL细胞相比,在miR-122转染的细胞中,上调了约14倍,22倍,2.2倍,13倍,200倍和38倍。在用miR-192转染并在8-12小时后用LPS处理的细胞中,IL-22,溶菌酶,TLR1,TLR3,TLR4a和TNF-α表达在WT和过表达miR-192的ZFL细胞之间有显着差异。但是,与未转染的细胞相比,在miR-192转染的ZFL细胞中LPS处理12小时后,我们观察到IL-22表达水平明显更高。相反,miR-194a转染和在ZFL细胞中过表达并用LPS处理后,IL-22,溶菌酶和TNF-α明显上调(> 100倍)。我们的克隆和表达分析表明,miR-122,miR-192和miR-194a在斑马鱼免疫学中起重要作用。

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