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NADPH oxidase-dependent and -independent mechanisms of reported inhibitors of reactive oxygen generation

机译:报道的活性氧生成抑制剂的NADPH氧化酶依赖性和非依赖性机理

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Abstract NADPH oxidase isoform-2 (NOX2) generates reactive oxygen species (ROS) that contribute to neurodegenerative and cardiovascular pathologies. However, validation of NOX2 as a pharmacotherapeutic target has been hampered by a lack of mechanistically-defined inhibitors. Using cellular and biochemical assays, we explored previously reported inhibitors of ROS production (perhexiline, suramin, VAS2870 and two Shionogi patent compounds) as direct NOX2 inhibitors. All but suramin, which presumably lacks cell penetrance, inhibit cellular ROS production. However, only perhexiline and suramin inhibit biochemical NOX2 activity. Indeed, our data suggest that NOX2 inhibition by perhexiline may contribute significantly to its demonstrated cardioprotective effects. Inhibition of protein kinase CβII explains the cellular activity of the Shionogi compounds, whereas VAS2870 inhibits by an as-yet unidentified mechanism unrelated to direct NOX2 function or subunit assembly. These data delineate the mechanisms of action of these compounds and highlight their strengths and limitations for use in future target validation studies.
机译:摘要NADPH氧化酶亚型2(NOX2)产生活性氧(ROS),有助于神经变性和心血管疾病。但是,由于缺乏机制明确的抑制剂,NOX2作为药物治疗靶标的验证受到了阻碍。使用细胞和生化分析,我们探索了先前报道的直接产生NOX2抑制剂的ROS生成抑制剂(perhexiline,suramin,VAS2870和两个Shionogi专利化合物)。除了苏拉明外,其余几乎都抑制了细胞的渗透,抑制了细胞ROS的产生。但是,只有perhexiline和苏拉明抑制生化NOX2活性。确实,我们的数据表明,perhexiline对NOX2的抑制作用可能对其已证明的心脏保护作用有很大贡献。蛋白激酶CβII的抑制解释了Shionogi化合物的细胞活性,而VAS2870受到迄今尚未发现的与NOX2直接功能或亚基组装无关的机制的抑制。这些数据描述了这些化合物的作用机理,并突出了它们在未来目标验证研究中的优势和局限性。

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