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Hydrogen Peroxide Decreases Endothelial Nitric Oxide Synthase Promoter Activity through the Inhibition of Sp1 Activity

机译:过氧化氢通过抑制Sp1活性降低内皮型一氧化氮合酶启动子的活性

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We have previously shown that endothelial nitric oxide synthase (eNOS) promoter activity is decreased in endothelial cells in response to the addition of hydrogen peroxide (H2O2), and this involves, at least in part, the inhibition of AP-1 activity. Thus, the objective of this study was to determine if other cis-element(s) and transcription factor(s) are involved in the oxidant-mediated downregulation of eNOS. Our initial experiments indicated that although H2O2 treatment increased eNOS mRNA levels in ovine pulmonary arterial endothelial cells (OPAECs), there was a significant decrease in the promoter activity of an eNOS promoter construct containing 840bp of upstream sequence. However, a truncated promoter construct that lacked the AP-1 element (650bp) was also inhibited by H2O2. A similar effect was observed when the 650bp human eNOS promoter construct was transfected into human PAECs. We also found that although exposure of the cells to PEG-catalase prevented the inhibitory effect on eNOS promoter activity, the hydroxyl radical scavenger, deferoxamine myslate, did not. Nor could we identify an increase in hydroxyl radical levels in cells exposed to H2O2. Exposure of PAECs caused a significant increase in labile zinc levels in response to H2O2. As the eNOS promoter has a cis-element for Sp1 binding, we evaluated the role of Sp1 in response to H2O2. As previously reported, mutation of the Sp1 consensus lead to the complete loss of eNOS promoter activity, confirming the key role of Sp1 in regulating basal eNOS promoter activity. In addition, we found, using electrophoretic mobility and supershift assays, that H2O2 decreased Sp1 binding. Finally, using chromatin immunoprecipitation analysis, we found a significant decrease in Sp1 binding to the eNOS promoter in vivo in response to treatment with H2O2. Together, these data suggest that the inhibition of Sp1 activity, possibly through loss of zinc in the protein, plays a role in the H2O2-induced inhibition of eNOS promoter activity.
机译:先前我们已经表明,响应过氧化氢(H2O2)的添加,内皮细胞中的内皮一氧化氮合酶(eNOS)启动子活性降低了,这至少部分涉及到AP-1活性的抑制。因此,本研究的目的是确定其他顺式元素和转录因子是否参与氧化剂介导的eNOS的下调。我们的初步实验表明,尽管H2O2处理增加了绵羊肺动脉内皮细胞(OPAECs)中eNOS mRNA的水平,但包含840bp上游序列的eNOS启动子构建体的启动子活性却显着下降。但是,缺少AP-1元素(650bp)的截短的启动子构建体也被H2O2抑制。当将650bp的人eNOS启动子构建体转染到人PAEC中时,观察到类似的效果。我们还发现,尽管将细胞暴露于PEG-过氧化氢酶可以阻止对eNOS启动子活性的抑制作用,但是羟基自由基清除剂去铁敏甲磺酸盐却没有。我们也无法确定暴露于H2O2的细胞中羟基自由基水平的增加。暴露于PAECs会导致对H2O2的不稳定锌含量显着增加。由于eNOS启动子具有与Sp1结合的顺式元件,因此我们评估了Sp1对H2O2的响应。如先前报道,Sp1共有序列的突变导致eNOS启动子活性完全丧失,从而证实了Sp1在调节基础eNOS启动子活性中的关键作用。此外,我们发现,使用电泳迁移率和超位移分析,H2O2减少了Sp1的结合。最后,使用染色质免疫沉淀分析,我们发现响应H2O2处理,体内Sp1与eNOS启动子的结合显着降低。总之,这些数据表明,Sp1活性的抑制(可能是由于蛋白质中锌的丢失)在H2O2诱导的eNOS启动子活性抑制中起作用。

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