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The Effect of ERK Signaling Pathway on the Level of Soluble RAGE (sRAGE) Peptide in AGE-Induced Oxidative Stress

机译:ERK信号通路对AGE诱导的氧化应激中可溶性RAGE(sRAGE)肽水平的影响

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In the context of diabetes, there is a bidirectional relation between AGEs and ROS which is amplified under hyperglycemic condition. Indeed, the AGE/RAGE interaction, via triggering several signaling pathways underlies such interplay. These damaging signaling cascades could be attenuated by naturally occurring soluble form of RAGE, namely sRAGE. In the present study, the effect of AGEs on the intracellular superoxide anion level and the antioxidant defense system was studied. Moreover, the link between the level of soluble RAGE and the AGE-triggered signaling pathways, namely ERK, was also investigated. Our results demonstrated that the elevation in intracellular superoxide anion level was associated with decrease in antioxidant enzyme activities. Our data also revealed that the level of sRAGE is negatively correlated with the ERK expression in a hyperglycemia model system. Hence, the current study brings about novel evidences suggesting that the level of sRAGE would be under the influence of stress-sensitive signaling pathways. Highlights Prominent activity decrease of intracellular antioxidant enzymes was demonstrated upon AGE-treatment. An increase in superoxide anion level was demonstrated upon AGE-treatment. The level of sRAGE is negatively associated with the ERK expression in AGE-treated cells. The level of sRAGE was shown to significantly elevate in the presence of ERK inhibitor.
机译:在糖尿病的情况下,AGEs和ROS之间存在双向关系,在高血糖情况下会被放大。确实,AGE / RAGE相互作用通过触发几种信号通路而成为这种相互作用的基础。这些破坏性的信号级联反应可被天然存在的RAGE可溶性形式sRAGE减弱。在本研究中,研究了AGEs对细胞内超氧阴离子水平和抗氧化防御系统的影响。此外,还研究了可溶性RAGE水平与AGE触发的信号通路即ERK之间的联系。我们的结果表明,细胞内超氧阴离子水平的升高与抗氧化酶活性的降低有关。我们的数据还显示,在高血糖模型系统中,sRAGE的水平与ERK表达呈负相关。因此,当前的研究带来了新的证据,表明sRAGE的水平将受到压力敏感信号通路的影响。亮点AGE处理后,细胞内抗氧化酶活性显着降低。 AGE处理显示超氧阴离子水平增加。 sRAGE水平与AGE处理细胞中的ERK表达负相关。在ERK抑制剂存在下,sRAGE水平显着升高。

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