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通过启动子分析研究斑马鱼干扰素调节因子 9 的表达调控。

Expression regulation of zebrafish interferon regulatory factor 9 by promoter analysis.

机构信息

State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China; Department of Bioengineering & Environmental Science, Changsha University, Changsha 410003, China.

出版信息

Dev Comp Immunol. 2013 Dec;41(4):534-43. doi: 10.1016/j.dci.2013.07.017. Epub 2013 Aug 1.

Abstract

We previously showed that a fish interferon (IFN) regulatory factor 9 (IRF9) homologue, crucian carp Carassius auratus IRF9, displays constitutively nuclear localization and involvement in fish IFN-dependent JAK-STAT signaling; however, little is known about the expression regulation of fish IRF9. Here, we characterized the expression of zebrafish IRF9 by promoter analysis. Zebrafish IRF9 gene promoter contained several putative transcription factor binding sites, including one ISRE (IFN-stimulated response element), one GAS (IFN gamma activation sequence) and three GATEs (IFNγ activated transcriptional element, GATE1/2/3). Further sequence analyses revealed that GAS and GATE motifs existed in all promoters of IRF9 from mammals and fishes. Luciferase assays confirmed that zebrafish IRF9 promoter could be activated by zebrafish IFNφs and zebrafish IFNγ2, as well as transcription factors IRF3, IRF7, and combination of IRF9 and STAT2. Treatment of recombinant crucian carp IFN protein or overexpression of zebrafish IFNγ2 both led to significant increase in crucian carp IRF9 mRNA and protein in cultured fish cells. Comparison of IFN-stimulated promoter activity revealed much more significant induction of zebrafish IRF9 by zebrafish IFNγ2 than by zebrafish IFNφs. Mutation analyses showed that the putative GAS and GATE3 contributed to zebrafish IFNγ2-triggered IRF9 expression, whereas the putative ISRE and the other two GATEs were not functional for induction of zebrafish IRF9. These results together indicated that the expression property of IRF9 might be conserved from fish to mammals and that some not yet identified mechanisms could exist in IRF9 gene transcription regulation in response to IFNs.

摘要

我们之前已经证明,一种鱼类干扰素(IFN)调节因子 9(IRF9)同源物,鲤鱼 Carassius auratus IRF9,表现为组成型核定位并参与鱼类 IFN 依赖性 JAK-STAT 信号转导;然而,关于鱼类 IRF9 的表达调控知之甚少。在这里,我们通过启动子分析对斑马鱼 IRF9 的表达进行了表征。斑马鱼 IRF9 基因启动子包含几个假定的转录因子结合位点,包括一个 ISRE(IFN 刺激反应元件)、一个 GAS(IFNγ 激活序列)和三个 GATEs(IFNγ 激活转录元件,GATE1/2/3)。进一步的序列分析表明,GAS 和 GATE 基序存在于来自哺乳动物和鱼类的所有 IRF9 启动子中。荧光素酶测定证实,斑马鱼 IRF9 启动子可被斑马鱼 IFNφ 和斑马鱼 IFNγ2 以及转录因子 IRF3、IRF7 和 IRF9 和 STAT2 的组合激活。重组鲤鱼 IFN 蛋白的处理或斑马鱼 IFNγ2 的过表达都导致培养的鱼类细胞中鲤鱼 IRF9 mRNA 和蛋白质的显著增加。IFN 刺激启动子活性的比较表明,斑马鱼 IFNγ2 对斑马鱼 IRF9 的诱导作用明显强于斑马鱼 IFNφ。突变分析表明,假定的 GAS 和 GATE3 有助于斑马鱼 IFNγ2 触发的 IRF9 表达,而假定的 ISRE 和另外两个 GATE 对于诱导斑马鱼 IRF9 没有功能。这些结果共同表明,IRF9 的表达特性可能从鱼类到哺乳动物都保守存在,并且在 IFN 反应中存在一些尚未确定的 IRF9 基因转录调控机制。

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