Deng Yuanyan, Chen Sainan, Zhang Mingming, Li Chen, He Jing, Tan Ying
Department of Cardiology, Integrated Hospital of Traditional Chinese Medicine, Southern Medical University, Guangzhou, China.
Department of Emergency Medicine, Nanfang Hospital, Southern Medical University, Guangzhou, China.
Front Cell Dev Biol. 2020 Aug 27;8:833. doi: 10.3389/fcell.2020.00833. eCollection 2020.
Cardiac ischemia-reperfusion (I/R) injury is associated with mitochondrial dysfunction. Recent studies have reported that mitochondrial function is determined by mitochondrial dynamics. Here, we hypothesized that AMPKα2 functions as an upstream mediator that sustains mitochondrial dynamics in cardiac I/R injury and cardiomyocyte hypoxia-reoxygenation (H/R) . To test this, we analyzed cardiomyocyte viability and survival along with mitochondrial dynamics and function using western blots, qPCR, immunofluorescence, and ELISA. Our results indicated that both AMPKα2 transcription and translation were reduced by H/R injury in cardiomyocytes. Decreased AMPKα2 levels were associated with cardiomyocyte dysfunction and apoptosis. Adenovirus-mediated AMPKα2 overexpression dramatically inhibited H/R-mediated cardiomyocyte damage, possibly by increasing mitochondrial membrane potential, inhibiting cardiomyocyte oxidative stress, attenuating intracellular calcium overload, and inhibiting mitochondrial apoptosis. At the molecular level, AMPKα2 overexpression alleviated abnormal mitochondrial division and improved mitochondrial fusion through activation of the Sirt3/PGC1α pathway. This suggests AMPKα2 contributes to maintaining normal mitochondrial dynamics. Indeed, induction of mitochondrial dynamics disorder abolished the cardioprotective effects afforded by AMPKα2 overexpression. Thus, cardiac I/R-related mitochondrial dynamics disorder can be reversed by AMPKα2 overexpression in a manner dependent on the activation of Sirt3/PGC1α signaling.
心脏缺血再灌注(I/R)损伤与线粒体功能障碍有关。最近的研究报道,线粒体功能由线粒体动力学决定。在此,我们假设AMPKα2作为上游介质,在心脏I/R损伤和心肌细胞缺氧复氧(H/R)过程中维持线粒体动力学。为了验证这一点,我们使用蛋白质免疫印迹、定量聚合酶链反应、免疫荧光和酶联免疫吸附测定分析了心肌细胞活力和存活情况以及线粒体动力学和功能。我们的结果表明,H/R损伤会降低心肌细胞中AMPKα2的转录和翻译水平。AMPKα2水平降低与心肌细胞功能障碍和凋亡有关。腺病毒介导的AMPKα2过表达显著抑制H/R介导的心肌细胞损伤,可能是通过增加线粒体膜电位、抑制心肌细胞氧化应激、减轻细胞内钙超载以及抑制线粒体凋亡来实现的。在分子水平上,AMPKα2过表达通过激活Sirt3/PGC1α途径减轻了异常的线粒体分裂并改善了线粒体融合。这表明AMPKα2有助于维持正常的线粒体动力学。事实上,线粒体动力学紊乱的诱导消除了AMPKα2过表达所提供的心脏保护作用。因此,AMPKα2过表达可以通过依赖Sirt3/PGC1α信号激活的方式逆转与心脏I/R相关的线粒体动力学紊乱。