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首页> 外文期刊>Antioxidants and redox signalling >NOX2 and NOX4 mediate proliferative response in endothelial cells.
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NOX2 and NOX4 mediate proliferative response in endothelial cells.

机译:NOX2和NOX4介导内皮细胞的增殖反应。

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Increased levels of reactive oxygen species (ROS) contribute to many cardiovascular diseases. In neutrophils, ROS are generated by a NADPH oxidase containing p22phox and NOX2. NADPH oxidases are also major sources of vascular ROS. Whereas an active NOX2-containing enzyme has been described in endothelial cells, the contribution of recently identified NOX homologues to endothelial ROS production and proliferation has been controversial. The authors, therefore, compared the role of NOX2 with NOX4 and NOX1 in endothelial EaHy926 and human microvascular endothelial cells. NOX2 and NOX4 were abundantly expressed, whereas NOX1 expression was less prominent. NOX2, NOX4, and NOX1 were simultaneously present in a single cell in a perinuclear compartment. NOX2 and NOX4 co-localized with the endoplasmic reticulum (ER) marker calreticulin. Additionally, NOX2 co-localized with F-actin at the plasma membrane. NOX2 and NOX4, which interacted with p22phox, as was shown by bimolecular fluorescent complementation, contributed equally to endothelial ROS production and proliferation, whereas NOX1 depletion did not alter ROS levels under basal conditions. These data show that endothelial cells simultaneously express NOX2, NOX4, and NOX1. NOX2 and NOX4, but not NOX1, equally contributed to ROS generation and proliferation under basal conditions, indicating that a complex relation between NOX homologues controls endothelial function.
机译:活性氧(ROS)含量增加导致许多心血管疾病。在中性粒细胞中,ROS是由含有p22phox和NOX2的NADPH氧化酶产生的。 NADPH氧化酶也是血管ROS的主要来源。尽管已经在内皮细胞中描述了一种含有活性NOX2的酶,但是最近鉴定出的NOX同系物对内皮ROS产生和增殖的贡献是有争议的。因此,作者比较了NOX2与NOX4和NOX1在内皮EaHy926和人微血管内皮细胞中的作用。 NOX2和NOX4大量表达,而NOX1表达不那么突出。 NOX2,NOX4和NOX1同时存在于核周区室的单个单元格中。 NOX2和NOX4与内质网(ER)标记钙网蛋白共定位。另外,NOX2与F-肌动蛋白共定位在质膜上。如双分子荧光互补所示,与p22phox相互作用的NOX2和NOX4对内皮ROS的产生和增殖均具有相同的贡献,而NOX1的消耗在基本条件下不会改变ROS的水平。这些数据表明内皮细胞同时表达NOX2,NOX4和NOX1。在基础条件下,NOX2和NOX4而不是NOX1同样促进ROS的产生和增殖,表明NOX同源物之间的复杂关系控制着内皮功能。

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