首页> 外文期刊>Antioxidants and redox signalling >NADPH oxidase 1 deficiency alters caveolin phosphorylation and angiotensin II-receptor localization in vascular smooth muscle.
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NADPH oxidase 1 deficiency alters caveolin phosphorylation and angiotensin II-receptor localization in vascular smooth muscle.

机译:NADPH氧化酶1缺乏症改变了血管平滑肌中的小窝蛋白磷酸化和血管紧张素II受体定位。

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摘要

The superoxide-generating NADPH oxidase NOX1 is thought to be involved in signaling by the angiotensin II-receptor AT1R. However, underlying signaling steps are poorly understood. In this study, we investigated the effect of AngII on aortic smooth muscle from wild-type and NOX1-deficient mice. NOX1-deficient cells showed decreased basal ROS generation and did not produce ROS in response to AngII. Unexpectedly, AngII-dependent Ca(2+) signaling was markedly decreased in NOX1-deficient cells. Immunostaining demonstrated that AT1R was localized on the plasma membrane in wild-type, but intracellularly in NOX1-deficient cells. Immunohistochemistry and immunoblotting showed a decreased expression of AT1R in the aorta of NOX1-deficient mice. To investigate the basis of the abnormal AT1R targeting, we studied caveolin expression and phosphorylation. The amounts of total caveolin and of caveolae were not different in NOX1-deficient mice, but a marked decrease occurred in the phosphorylated form of caveolin. Exogenous H(2)O(2) or transfection of a NOX1 plasmid restored AngII responses in NOX1-deficient cells. Based on these findings, we propose that NOX1-derived reactive oxygen species regulate cell-surface expression of AT1R through mechanisms including caveolin phosphorylation. The lack cell-surface AT1R expression in smooth muscle could be involved in the decreased blood pressure in NOX1-deficient mice.
机译:产生超氧化物的NADPH氧化酶NOX1被认为与血管紧张素II受体AT1R有关。但是,基本的信令步骤了解得很少。在这项研究中,我们调查了AngII对来自野生型和NOX1缺陷型小鼠的主动脉平滑肌的作用。缺乏NOX1的细胞显示出基础ROS减少,并且不响应AngII产生ROS。出乎意料的是,AngII依赖性Ca(2+)信号明显减少NOX1缺乏细胞。免疫染色表明,AT1R位于野生型的质膜上,但位于细胞内NOX1缺陷的细胞内。免疫组织化学和免疫印迹显示,NOX1缺陷小鼠主动脉中AT1R的表达降低。为了调查异常AT1R靶向的基础,我们研究了caveolin表达和磷酸化。在缺少NOX1的小鼠中,总的小窝蛋白和小窝蛋白的量没有差异,但是小窝蛋白的磷酸化形式却有明显的减少。外源H(2)O(2)或NOX1质粒的转染恢复了NOX1缺陷细胞中的AngII反应。基于这些发现,我们建议,NOX1衍生的活性氧通过包括caveolin磷酸化在内的机制调节AT1R的细胞表面表达。缺乏NOX1小鼠血压下降可能与平滑肌细胞表面AT1R表达不足有关。

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