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Activation of AMP kinase α1 subunit induces aortic vasorelaxation in mice

机译:AMP激酶α1亚基的激活诱导小鼠主动脉血管舒张

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摘要

Vasodilatation is a vital mechanism of systemic blood flow regulation that occurs during periods of increased energy demand. The AMP-dependent protein kinase (AMPK) is a serine/threonine kinase that is activated by conditions that increase the AMP-to-ATP ratio, such as exercise and metabolic stress. We hypothesized that AMPK could trigger vasodilatation and participate in blood flow regulation. Rings of thoracic aorta were isolated from C57Bl6 mice and mice deficient in the AMPK catalytic α1 (AMPKα1−/−) or α2 (AMPKα2−/−) subunit and their littermate controls, and mounted in an organ bath. Aortas were preconstricted with phenylephrine (1 μm) and activation of AMPK was induced by addition of increasing concentrations of 5-aminoimidazole-4-carboxamide-1-β-d-ribofuranoside (AICAR). AICAR (0.1–3 mm) dose-dependently induced relaxation of precontracted C57BL6, AMPKα1+/+ and α2+/+ aorta (P < 0.001, n = 5–7 per group). This AICAR induced vasorelaxation was not inhibited by the addition of adenosine receptor antagonists. Moreover, when aortic rings were freed of endothelium by gentle rubbing, AICAR still induced aortic ring relaxation, suggesting a direct effect of AICAR on smooth muscle cells. When aortic rings were pretreated with l-NMMA (30 μm) to inhibit nitric oxide synthase activity, AICAR still induced relaxation. Western blot analysis of C57Bl6 mice denuded aorta showed that AMPK was phosphorylated after incubation with AICAR and that AMPKα1 was the main catalytic subunit expressed. Finally, AICAR-induced relaxation of aortic rings was completely abolished in AMPKα1−/− but not AMPKα2−/− mice. Taken together, the results show that activation of AMPKα1 but not AMPKα2 is able to induce aortic relaxation in mice, in an endothelium- and eNOS-independent manner.
机译:血管舒张是全身性血流调节的重要机制,发生在能量需求增加的时期。 AMP依赖性蛋白激酶(AMPK)是一种丝氨酸/苏氨酸激酶,可通过增加AMP与ATP之比的条件(例如运动和代谢应激)激活。我们假设AMPK可以触发血管舒张并参与血流调节。从C57Bl6小鼠和缺乏AMPK催化α1(AMPKα1-/-)或α2(AMPKα22-/-)亚基及其同窝对照的小鼠中分离出胸主动脉环,并安装在器官浴中。主动脉用去氧肾上腺素(1μm)预收缩,并通过添加浓度递增的5-氨基咪唑-4-甲酰胺-1-β-d-呋喃呋喃糖苷(AICAR)诱导AMPK激活。 AICAR(0.1–3 mm)剂量依赖性诱导预收缩的C57BL6,AMPKα1 + / + 和α2 + / + 主动脉舒张(P <0.001,n = 5–7每组)。加入腺苷受体拮抗剂不会抑制AICAR诱导的血管舒张。此外,当通过轻轻摩擦使主动脉环脱离内皮时,AICAR仍会引起主动脉环松弛,这表明AICAR对平滑肌细胞有直接作用。当用1-NMMA(30μm)预处理主动脉环以抑制一氧化氮合酶活性时,AICAR仍会诱导松弛。对剥夺主动脉的C57B16小鼠的蛋白质印迹分析表明,AMPK与AICAR孵育后被磷酸化,而AMPKα1是表达的主要催化亚基。最后,在AMPKα1-/-小鼠中,AICAR引起的主动脉环松弛被完全消除,而在AMPKα2-/-小鼠中则完全消失。两者合计,结果表明激活AMPKα1而不是AMPKα2能够以不依赖内皮和eNOS的方式诱导小鼠主动脉舒张。

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