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首页> 外文期刊>Scientific reports. >Lysine Methyltransferase SETD7 (SET7/9) Regulates ROS Signaling through mitochondria and NFE2L2/ARE pathway
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Lysine Methyltransferase SETD7 (SET7/9) Regulates ROS Signaling through mitochondria and NFE2L2/ARE pathway

机译:赖氨酸甲基转移酶SETD7(SET7 / 9)通过线粒体和NFE2L2 / ARE途径调节ROS信号传导

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Reactive oxygen species (ROS) homeostasis requires stringent regulation. ROS imbalance, especially ROS accumulation, has profound implications in various disease pathogenesis. Lysine methylation of histone and non-histone proteins has been implicated in various cellular responses. The main objective of this study is to investigate the role of SET domain containing lysine methyltransferase SETD7 (SET7/9) in the regulation of ROS-mediated signaling. Here we report that inhibition of SETD7 with siRNA or a SETD7 small molecule inhibitor in both macrophages and a human bronchial epithelial cell line (Beas-2B) were able to counter NF-?B-induced oxidative stress and pro-inflammatory cytokine production. Meanwhile, inhibition of SETD7 elevates mitochondria antioxidant functions via negative regulation of PPARGC1A and NFE2L2. Using a co-expression system and purified proteins, we detected direct interaction between SETD7 and NFE2L2. These results indicate that lysine methylation by SETD7 is important for the fine-tuning of ROS signaling through its regulation on pro-inflammatory responses, mitochondrial function and the NFE2L2/ARE pathway. Up-regulation of multiple antioxidant genes and improved ROS clearance by inhibition of SETD7 suggests the potential benefit of targeting SETD7 in treating ROS-associated diseases.
机译:活性氧(ROS)稳态需要严格的调节。 ROS失衡,尤其是ROS积累,在各种疾病的发病机理中具有深远的意义。组蛋白和非组蛋白的赖氨酸甲基化与多种细胞反应有关。这项研究的主要目的是调查包含赖氨酸甲基转移酶SETD7(SET7 / 9)的SET域在调节ROS介导的信号传导中的作用。在这里,我们报道在巨噬细胞和人支气管上皮细胞系(Beas-2B)中,用siRNA或SETD7小分子抑制剂抑制SETD7能够抵抗NF-κB诱导的氧化应激和促炎性细胞因子的产生。同时,对SETD7的抑制通过PPARGC1A和NFE2L2的负调控提高线粒体的抗氧化功能。使用共表达系统和纯化的蛋白质,我们检测到SETD7和NFE2L2之间的直接相互作用。这些结果表明,SETD7的赖氨酸甲基化通过调节促炎症反应,线粒体功能和NFE2L2 / ARE途径,对ROS信号的微调非常重要。多种抗氧化剂基因的上调和通过抑制SETD7改善的ROS清除率表明,靶向SETD7在治疗与ROS相关的疾病中具有潜在的优势。

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