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首页> 外文期刊>Antioxidants and redox signalling >Unchanged NADPH Oxidase Activity in Nox1-Nox2-Nox4 Triple Knockout Mice: What Do NADPH-Stimulated Chemiluminescence Assays Really Detect?
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Unchanged NADPH Oxidase Activity in Nox1-Nox2-Nox4 Triple Knockout Mice: What Do NADPH-Stimulated Chemiluminescence Assays Really Detect?

机译:在Nox1-Nox2-Nox4三重敲除小鼠中不变的NADPH氧化酶活性:NADPH刺激的化学发光测定能真正检测出什么?

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摘要

NADPH oxidases of the Nox family are considered important sources of cellular reactive oxygen species (ROS) production. This conclusion is, in part, based on the ability of NADPH to elicit a chemiluminescence signal in tissue/cell homogenates or membrane preparations in the presence of enhancers such as lucigenin, luminol, or L012. However, the ability of these particular assays to specifically detect Nox activity and Nox-derived ROS has not been proven. In this study, we demonstrate that combined knockout of the three main Nox enzymes of the mouse (Nox1-Nox2-Nox4 triple knockout) had no impact on NADPH-stimulated chemiluminescence signals in the aorta, heart, and kidney homogenates. In the NADPH-stimulated membrane assays, no effect of in vivo angiotensin II pretreatment or deletion of Nox enzymes was observed. In in vitro studies in HEK293 cells, the overexpression of Nox5 or Nox4 markedly increased ROS production in intact cells, whereas overexpression of Nox5 or Nox4 had no influence on the signal in membrane assays. In contrast, overexpression of nitric oxide synthase or cytochrome P450 enzymes resulted in an increased chemiluminescence signal in isolated membranes. On the basis of these observations, we propose the hypothesis that NADPH-stimulated chemiluminescence-based membrane assays, as currently used, do not reflect Nox activity. Antioxid. Redox Signal. 24, 392-399.
机译:Nox家族的NADPH氧化酶被认为是细胞产生活性氧(ROS)的重要来源。该结论部分基于NADPH在存在增强剂(如光泽素,鲁米诺或L012)的情况下,在组织/细胞匀浆或膜制剂中引发化学发光信号的能力。然而,尚未证明这些特定测定法特异性检测Nox活性和源自Nox的ROS的能力。在这项研究中,我们证明了小鼠的三种主要Nox酶(Nox1-Nox2-Nox4三重敲除)的联合敲除对NADPH刺激的主动脉,心脏和肾脏匀浆中的化学发光信号没有影响。在NADPH刺激的膜测定中,未观察到体内血管紧张素II预处理或Nox酶缺失的影响。在HEK293细胞的体外研究中,Nox5或Nox4的过表达显着增加了完整细胞中ROS的产生,而Nox5或Nox4的过表达对膜测定中的信号没有影响。相反,一氧化氮合酶或细胞色素P450酶的过表达导致隔离膜中化学发光信号的增加。基于这些观察,我们提出了这样一种假设,即当前使用的NADPH刺激的基于化学发光的膜测定法不能反映Nox活性。抗氧化。氧化还原信号。 24,392-399。

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