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首页> 外文期刊>Surgical infections >Sp1 Elements Regulate Transcriptional Activity within the Murine Toll-like Receptor 4 Promoter
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Sp1 Elements Regulate Transcriptional Activity within the Murine Toll-like Receptor 4 Promoter

机译:Sp1元素调节小鼠Toll样受体4启动子内的转录活性。

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摘要

Background and Purpose: Toll-like receptor 4 (TLR4) mediates the innate immune response to lipopolysaccharide (LPS) by a complex intracellular signaling pathway that activates the transcription factor nuclear factor (NF)-κB, with subsequent production of inflammatory cy-tokines. The precise mechanisms involved have not been delineated. We hypothesized that specific regulatory elements exist within the TLR4 promoter. Methods: We cloned regions of the murine TLR4 promoter (0.25 kb to 2 kb; -2000 bp to +244 bp) into the pGL3-Basic plasmid containing the firefly luciferase gene and used the resulting constructs to transfect HEK293 or RAW 264.7 cells. After 24 h, we used LPS to stimulate RAW 264.7 cells. We quantified relative light units (RLUs) of cell lysates and secreted tumor necrosis factor (TNF)-α. For pairwise comparison, we used Student's t-test. Sequence analysis of the promoter revealed several putative Sp1 sites. We used two constructs showing increased promoter activity, TLR4-750/-1 and TLR4-500/-1, to transfect cells in the presence of a specific Sp1 inhibitor, mithramycin A. Results: Of the six promoter constructs, four showed greater transcriptional activity (p < 0.05 vs. pGL3-Basic), as measured by luciferase activity. However, we did not observe differences in transcriptional activity of the promoter in five of those six constructs when we stimulated transfected RAW 264.7 cells with 10 ng of LPS. This finding suggests that transcriptional regulation of the promoter is unaffected by cellular changes caused by LPS. Both TLR4-750/-1 and TLR4-500/-1 showed dose-dependent reductions in transcriptional activity in the presence of increasing concentrations of the specific Sp1 inhibitor mithramycin A in both HEK293 and RAW 264.7 cells (p < 0.05 vs. no mithramycin A). Conclusion: At least one Sp1 transcriptional regulatory element is present within the murine TLR4 promoter (range -750 bp to -250 bp). This finding holds promise for manipulating this fundamental inflammatory response.
机译:背景与目的:Toll样受体4(TLR4)通过复杂的细胞内信号传导通路介导对脂多糖(LPS)的先天免疫应答,该通路激活转录因子核因子(NF)-κB,并随后产生炎性细胞因子。尚未描述涉及的确切机制。我们假设TLR4启动子内存在特定的调控元件。方法:我们将鼠TLR4启动子区域(0.25 kb至2 kb; -2000 bp至+244 bp)克隆到含有萤火虫荧光素酶基因的pGL3-Basic质粒中,并使用所得构建体转染HEK293或RAW 264.7细胞。 24小时后,我们使用LPS刺激RAW 264.7细胞。我们量化了细胞裂解物和分泌的肿瘤坏死因子(TNF)-α的相对光单位(RLU)。为了进行成对比较,我们使用了学生t检验。启动子的序列分析揭示了几个推定的Sp1位点。我们使用显示出增加的启动子活性的两种构建体TLR4-750 / -1和TLR4-500 / -1在存在特定Sp1抑制剂光神霉素A的情况下转染细胞。结果:在六个启动子构建体中,四个显示出更高的转录荧光素酶活性测量的活性(p <0.05,相对于pGL3-Basic)。但是,当我们用10 ng LPS刺激转染的RAW 264.7细胞时,在这六个构建物中的五个中,我们没有观察到启动子转录活性的差异。该发现表明,启动子的转录调节不受LPS引起的细胞变化的影响。在HEK293细胞和RAW 264.7细胞中存在特定浓度的特定Sp1抑制剂光神霉素A的情况下,TLR4-750 / -1和TLR4-500 / -1均表现出剂量依赖性的转录活性降低(p <0.05 vs.没有光神霉素)一个)。结论:鼠TLR4启动子中存在至少一个Sp1转录调控元件(范围为-750 bp至-250 bp)。这一发现有望操纵这种基本的炎症反应。

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