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首页> 外文期刊>Circulation research: a journal of the American Heart Association >Extracellular signal-regulated kinase 5 SUMOylation antagonizes shear stress-induced antiinflammatory response and endothelial nitric oxide synthase expression in endothelial cells.
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Extracellular signal-regulated kinase 5 SUMOylation antagonizes shear stress-induced antiinflammatory response and endothelial nitric oxide synthase expression in endothelial cells.

机译:细胞外信号调节激酶5 SUMOylation拮抗剪切应力诱导的抗炎反应和内皮细胞中一氧化氮合酶的表达。

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Shear stress-induced extracellular signal-regulated kinase (ERK)5 activation and the consequent regulation of Kruppel-like factor 2 and endothelial nitric oxide synthase expression represents one of the antiinflammatory and vascular tone regulatory mechanisms maintaining normal endothelial function. Endothelial dysfunction is a major initiator of atherosclerosis, a vascular pathology often associated with diabetes. Small ubiquitin-like modifier (SUMO) covalently attaches to certain residues of specific target transcription factors and could inhibit its activity. We investigated whether H(2)O(2) and AGE (advanced glycation end products), 2 well-known mediators of diabetes, negatively regulated ERK5 transcriptional activity and laminar flow-induced endothelial nitric oxide synthase expression through ERK5 SUMOylation. H(2)O(2) and AGE induced endogenous ERK5 SUMOylation. In addition, ERK5 SUMOylation was increased in the aortas from diabetic mice. ERK5 transcriptional activity, but not kinase activity, was inhibited by expression of Ubc9 (SUMO E2 conjugase) or PIAS1 (E3 ligase), suggesting the involvement of ERK5 SUMOylation on its transcriptional activity. Point-mutation analyses showed that ERK5 is covalently modified by SUMO at 2 conserved sites, Lys6 and Lys22, and that the SUMOylation defective mutant of ERK5, dominant negative form of Ubc9 (DN-Ubc9), and small interfering RNA PIAS1 reversed H(2)O(2) and AGE-mediated reduction of shear stress-mediated ERK5/myocyte enhancer factor 2 transcriptional activity, as well as promoter activity of Kruppel-like factor 2. Finally, PIAS1 knockdown reversed the inhibitory effect of H(2)O(2) in shear stress-induced Kruppel-like factor 2 and endothelial nitric oxide synthase expression. These data clearly defined SUMOylation-dependent ERK5 transcriptional repression independent of kinase activity and suggested this process as among the molecular mechanisms of diabetes-mediated endothelial dysfunction.
机译:剪应力诱导的细胞外信号调节激酶(ERK)5的激活以及随后Kruppel样因子2和内皮一氧化氮合酶表达的调节代表了维持正常内皮功能的抗炎和血管紧张调节机制之一。内皮功能障碍是动脉粥样硬化的主要诱因,动脉粥样硬化是经常与糖尿病相关的血管病理。小型泛素样修饰剂(SUMO)共价附于特定靶转录因子的某些残基,并可能抑制其活性。我们调查了H(2)O(2)和AGE(高级糖基化终产物),糖尿病的2个著名介体是否对ERK5转录活性和层流通过ERK5 SUMOylation诱导的内皮流一氧化氮合酶的表达负调控。 H(2)O(2)和AGE诱导内源性ERK5 SUMOylation。另外,糖尿病小鼠的主动脉中ERK5 SUMOylation增加。 Ubc9(SUMO E2偶联酶)或PIAS1(E3连接酶)的表达抑制了ERK5转录活性,但不抑制激酶活性,表明ERK5 SUMOylation参与了其转录活性。点突变分析表明,SUMO在2个保守位点Lys6和Lys22共价修饰ERK5,并且EMO5的SUMOylation缺陷突变体,Ubc9的显性负型(DN-Ubc9)和小的干扰RNA PIAS1逆转了H(2 )O(2)和AGE介导的剪切应力介导的ERK5 /肌细胞增强因子2转录活性的减少以及Kruppel样因子2的启动子活性。最后,PIAS1敲低逆转了H(2)O的抑制作用(2)在剪应力作用下诱导的Kruppel样因子2和内皮型一氧化氮合酶的表达。这些数据清楚地定义了SUMOylation依赖的ERK5转录抑制,与激酶活性无关,并提示该过程是糖尿病介导的内皮功能障碍的分子机制之一。

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