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首页> 外文期刊>Cellular and molecular life sciences: CMLS >Regulation of AMPK activity by type 10 adenylyl cyclase: contribution to the mitochondrial biology, cellular redox and energy homeostasis
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Regulation of AMPK activity by type 10 adenylyl cyclase: contribution to the mitochondrial biology, cellular redox and energy homeostasis

机译:通过10型腺苷酸环酶调节AMPK活性:对线粒体生物学,细胞氧化还原和能量稳态的贡献

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The downregulation of AMP-activated protein kinase (AMPK) activity contributes to numerous pathologies. Recent reports suggest that the elevation of cellular cAMP promotes AMPK activity. However, the source of the cAMP pool that controls AMPK activity remains unknown. Mammalian cells possess two cAMP sources: membrane-bound adenylyl cyclase (tmAC) and intracellularly localized, type 10 soluble adenylyl cyclase (sAC). Due to the localization of sAC and AMPK in similar intracellular compartments, we hypothesized that sAC may control AMPK activity. In this study, sAC expression and activity were manipulated in H9C2 cells, adult rat cardiomyocytes or endothelial cells. sAC knockdown depleted the cellular cAMP content and decreased AMPK activity in an EPAC-dependent manner. Functionally, sAC knockdown reduced cellular ATP content, increased mitochondrial ROS formation and led to mitochondrial depolarization. Furthermore, sAC downregulation led to EPAC-dependent mitophagy disturbance, indicated by an increased mitochondrial mass and unaffected mitochondrial biogenesis. Consistently, sAC overexpression or stimulation with bicarbonate significantly increased AMPK activity and cellular ATP content. In contrast, tmAC inhibition or stimulation produced no effect on AMPK activity. Therefore, the sAC-EPAC axis may regulate basal and induced AMPK activity and support mitophagy, cellular energy and redox homeostasis. The study argues for sAC as a potential target in treating pathologies associated with AMPK downregulation.
机译:AMP活化蛋白激酶(AMPK)活性的下调有助于许多病理学。最近的报道表明,细胞阵营的升高促进了AMPK活动。但是,控制AMPK活动的CAMP池的来源仍然是未知的。哺乳动物细胞具有两个阵营来源:膜结合的腺苷酸环酶(TMAC)和细胞内局部化,型10种可溶性腺苷酸环酶(SAC)。由于囊和AMPK在类似的细胞内隔室中,我们假设SAC可以控制AMPK活性。在本研究中,在H9C2细胞,成年大鼠心肌细胞或内皮细胞中操纵囊表达和活性。 SAC敲除以EPAC依赖性方式耗尽细胞阵容含量并降低了AMPK活性。在功能上,SAC敲低降低细胞ATP含量,增加线粒体ROS形成并导致线粒体去极化。此外,SAC下调导致EPAC依赖性的影响紊乱,其线粒体质量增加和未受影响的线粒体生物发生增加。始终如一地,囊过表达或用碳酸氢盐的刺激显着增加了AMPK活性和细胞ATP含量。相反,TMAC抑制或刺激对AMPK活性没有产生影响。因此,SAC-EPAC轴可以调节基础和诱导的AMPK活性并支持乳化物,细胞能量和氧化还原稳态。该研究认为SAC作为治疗与安培下调相关的病理学的潜在靶标。

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