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Oxidative stress improves coronary endothelial function through activation of the pro-survival kinase AMPK

机译:氧化应激通过激活生存前激酶AMPK改善冠状动脉内皮功能

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摘要

Age-associated decline in cardiovascular function is believed to occur from the deleterious effects of reactive oxygen species (ROS). However, failure of recent clinical trials using antioxidants in patients with cardiovascular disease, and the recent findings showing paradoxical role for NADPH oxidase-derived ROS in endothelial function challenge this long-held notion against ROS. Here, we examine the effects of endothelium-specific conditional increase in ROS on coronary endothelial function. We have generated a novel binary (Tet-ON/OFF) conditional transgenic mouse (Tet-Nox2:VE-Cad-tTA) that induces endothelial cell (EC)-specific overexpression of Nox2/gp91 (NADPH oxidase) and 1.8±0.42-fold increase in EC-ROS upon tetracycline withdrawal (Tet-OFF). We examined ROS effects on EC signaling and function. First, we demonstrate that endothelium-dependent coronary vasodilation was significantly improved in Tet-OFF Nox2 compared to Tet-ON (control) littermates. Using EC isolated from mouse heart, we show that endogenous ROS increased eNOS activation and nitric oxide (NO) synthesis through activation of the survival kinase AMPK. Coronary vasodilation in Tet-OFF Nox2 animals was CaMKKβ-AMPK-dependent. Finally, we demonstrate that AMPK activation induced autophagy and thus, protected ECs from oxidant-induced cell death. Together, these findings suggest that increased ROS levels, often associated with cardiovascular conditions in advanced age, play a protective role in endothelial homeostasis by inducing AMPK-eNOS axis.
机译:据信,与年龄相关的心血管功能下降是由于活性氧(ROS)的有害作用引起的。然而,最近在心血管疾病患者中使用抗氧化剂的临床试验失败,以及最近的发现表明NADPH氧化酶衍生的ROS在内皮功能中具有反常作用,这一长期存在的观念挑战了ROS。在这里,我们检查了ROS中内皮特异性条件性增加对冠状动脉内皮功能的影响。我们已经产生了一种新型的二元(Tet-ON / OFF)条件转基因小鼠(Tet-Nox2:VE-Cad-tTA),其诱导内皮细胞(EC)特异性Nox2 / gp91(NADPH氧化酶)和1.8±0.42-的过表达。四环素戒断后EC-ROS的增加倍数(Tet-OFF)。我们检查了ROS对EC信号和功能的影响。首先,我们证明与Tet-ON(对照)同窝仔相比,Tet-OFF Nox2的内皮依赖性冠状血管舒张作用得到显着改善。使用从小鼠心脏分离的EC,我们显示内源性ROS通过激活生存激酶AMPK来增加eNOS激活和一氧化氮(NO)合成。 Tet-OFF Nox2动物的冠状血管舒张作用是CaMKKβ-AMPK依赖性的。最后,我们证明AMPK激活诱导自噬,从而保护EC免受氧化剂诱导的细胞死亡。总之,这些发现表明,升高的ROS水平(通常与高龄者的心血管疾病有关)通过诱导AMPK-eNOS轴而在内皮稳态中起保护作用。

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