首页> 外文期刊>Journal of Lipid Research >In vitro knockout of human p47phox blocks superoxide anion production and LDL oxidation by activated human monocytes.
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In vitro knockout of human p47phox blocks superoxide anion production and LDL oxidation by activated human monocytes.

机译:人p47phox的体外敲除可抑制人激活的单核细胞产生超氧阴离子和LDL氧化。

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摘要

We previously reported that superoxide dismutase (SOD) blocked human monocyte oxidation of LDL and therefore concluded that superoxide anion (O(2)(.-)) was required for oxidation. Others, however, have suggested that SOD may inhibit by mechanisms alternative to the dismutation of O(2)(.-). This study definitively addresses the involvement of O(2)(.-) in monocyte oxidation of LDL. Using an antisense ODN designed to target p47phox mRNA, we found that treatment of monocytes with antisense ODN caused a substantial and selective decrease in expression of p47phox protein, whereas sense ODN was without effect. Corresponding functional assays demonstrated that antisense ODN inhibited production of O(2)(.-). As sense ODN caused no inhibition of O(2)(.-) production, these results suggested that inhibition of p47phox expression caused reduction in O(2)(.-) production. Evaluation of the contribution of O(2)(.-) production to monocyte-mediated oxidation of LDL lipids confirmed that O(2)(.-) production is required for LDL lipid oxidation as antisense ODN treatment significantly inhibited LDL oxidation whereas sense ODN treatment caused no inhibition. This is the first report of the reduction of NADPH oxidase activity in intact human monocytes by directly targeting the mRNA of a significant member of this enzyme complex. Our results provide convincing data that O(2)(.-) is indeed required for monocyte-mediated LDL oxidation.
机译:我们以前报道过,超氧化物歧化酶(SOD)阻止了LDL的人类单核细胞氧化,因此得出结论,氧化需要超氧阴离子(O(2)(.-))。然而,其他人则建议,SOD可能通过替代O(2)(.-)变异的机制抑制。这项研究明确地解决了O(2)(.-)在LDL单核细胞氧化中的参与。使用针对p47phox mRNA的反义ODN,我们发现用反义ODN处理单核细胞会导致p47phox蛋白表达的显着和选择性降低,而有义ODN则无效。相应的功能分析表明,反义ODN抑制了O(2)(.-)的产生。由于有义ODN不会引起O(2)(.-)产生的抑制,这些结果表明抑制p47phox表达导致O(2)(.-)产生的减少。 O(2)(.-)生产对单核细胞介导的LDL脂质氧化的贡献的评估证实,LDL脂质氧化需要O(2)(.-)生产,因为反义ODN处理显着抑制LDL氧化,而有义ODN治疗未引起抑制。这是通过直接靶向该酶复合物重要成员的mRNA来降低完整人类单核细胞中NADPH氧化酶活性的首次报道。我们的结果提供了令人信服的数据,单核细胞介导的LDL氧化确实需要O(2)(.-)。

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