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Four Promoters of IRF5 Respond Distinctly to Stimuli and are Affected by Autoimmune-Risk Polymorphisms

机译:IRF5的四个启动子分别对刺激作出反应并受到自身免疫风险多态性的影响

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摘要

>Introduction: Autoimmune diseases such as systemic lupus erythematosus, rheumatoid arthritis, and multiple sclerosis affect millions of people worldwide. Interferon regulatory factor 5 (IRF5) contains polymorphisms associated with these autoimmune diseases. Two of these functional polymorphisms are found upstream of the IRF5 gene. rs2004640, which is a single nucleotide polymorphism and the CGGGG insertion/deletion (indel) were studied. IRF5 uses four different promoters for its four first exons: 1A, 1B, 1C, and 1D. Each promoter was analyzed, including functional differences due to the autoimmune-risk polymorphisms.>Results: IRF5 promoters were analyzed using ChIP-Seq data (ENCODE database) and the FactorBook database to define transcription factor binding sites. To verify promoter activity, the promoters were cloned into luciferase plasmids. Each construct exhibited luciferase activity. Exons 1A and 1D contain putative PU.1 and NFkB binding sites. Imiquimod, a Toll-like receptor 7 (TLR7) ligand, was used to activate these transcription factors. IRF5 levels were doubled after imiquimod treatment (p < 0.001), with specific increases in the 1A promoter (2.2-fold, p = 0.03) and 1D promoter (2.8-fold, p = 0.03). A putative binding site for p53, which affects apoptosis, was found in the promoter for exon 1B. However, site-directed mutagenesis of the p53 site showed no effect in a reporter assay.>Conclusion: The IRF5 exon 1B promoter has been characterized, and the responses of each IRF5 promoter to TLR7 stimulation have been determined. Changes in promoter activity and gene expression are likely due to specific and distinct transcription factors that bind to each promoter. Since high expression of IRF5 contributes to the development of autoimmune disease, understanding the source of increased IRF5 levels is key to understanding autoimmune etiology.
机译:>简介:诸如系统性红斑狼疮,类风湿性关节炎和多发性硬化症等自身免疫性疾病影响着全球数百万人。干扰素调节因子5(IRF5)包含与这些自身免疫性疾病相关的多态性。这些功能性多态性中的两个在IRF5基因的上游发现。 rs2004640,这是一个单核苷酸多态性和CGGGG插入/删除(插入/缺失)进行了研究。 IRF5的四个第一个外显子使用四个不同的启动子:1A,1B,1C和1D。分析每个启动子,包括由于自身免疫风险多态性引起的功能差异。>结果:使用ChIP-Seq数据(ENCODE数据库)和FactorBook数据库分析了IRF5启动子,以定义转录因子结合位点。为了验证启动子活性,将启动子克隆到荧光素酶质粒中。每个构建体均显示萤光素酶活性。外显子1A和1D包含推定的PU.1和NFkB结合位点。咪喹莫特,一种Toll样受体7(TLR7)配体,用于激活这些转录因子。咪喹莫特治疗后,IRF5水平增加了一倍(p 0.001),其中1A启动子(2.2倍,p = 0.03)和1D启动子(2.8倍,p = 0.03)有特异性增加。在外显子1B的启动子中发现了p53的一个可能影响细胞凋亡的结合位点。然而,p53位点的定点诱变在报告基因检测中没有作用。>结论:已经鉴定了IRF5外显子1B启动子,并确定了每个IRF5启动子对TLR7刺激的反应。启动子活性和基因表达的变化可能是由于与每个启动子结合的特异性和独特的转录因子引起的。由于IRF5的高表达有助于自身免疫疾病的发展,因此了解IRF5水平升高的来源是了解自身免疫病因的关键。

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