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星形胶质细胞中线粒体可溶性环化酶的药理学抑制会导致 AMP 激活的蛋白激酶的激活,并诱导糖原分解。

Pharmacological inhibition of mitochondrial soluble adenylyl cyclase in astrocytes causes activation of AMP-activated protein kinase and induces breakdown of glycogen.

机构信息

Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark.

Department of Biochemistry and Molecular Biology, University of Southern Denmark, Denmark.

出版信息

Glia. 2021 Dec;69(12):2828-2844. doi: 10.1002/glia.24072. Epub 2021 Aug 11.

Abstract

Mobilization of astrocyte glycogen is key for processes such as synaptic plasticity and memory formation but the link between neuronal activity and glycogen breakdown is not fully known. Activation of cytosolic soluble adenylyl cyclase (sAC) in astrocytes has been suggested to link neuronal depolarization and glycogen breakdown partly based on experiments employing pharmacological inhibition of sAC. However, several studies have revealed that sAC located within mitochondria is a central regulator of respiration and oxidative phosphorylation. Thus, pharmacological sAC inhibition is likely to affect both cytosolic and mitochondrial sAC and if bioenergetic readouts are studied, the observed effects are likely to stem from inhibition of mitochondrial rather than cytosolic sAC. Here, we report that a pharmacologically induced inhibition of sAC activity lowers mitochondrial respiration, induces phosphorylation of the metabolic master switch AMP-activated protein kinase (AMPK), and decreases glycogen stores in cultured primary murine astrocytes. From these data and our discussion of the literature, mitochondrial sAC emerges as a key regulator of astrocyte bioenergetics. Lastly, we discuss the challenges of investigating the functional and metabolic roles of cytosolic versus mitochondrial sAC in astrocytes employing the currently available pharmacological tool compounds.

摘要

星形胶质细胞糖原的动员对于突触可塑性和记忆形成等过程至关重要,但神经元活动与糖原分解之间的联系尚不完全清楚。星形胶质细胞中细胞质可溶性腺苷酸环化酶 (sAC) 的激活被认为部分通过神经元去极化和糖原分解的药理学抑制实验与神经元去极化和糖原分解有关。然而,几项研究表明,位于线粒体中的 sAC 是呼吸和氧化磷酸化的中央调节因子。因此,药理学 sAC 抑制很可能会影响细胞质和线粒体 sAC,如果研究生物能学指标,那么观察到的影响很可能源于线粒体而不是细胞质 sAC 的抑制。在这里,我们报告说,药理学诱导的 sAC 活性抑制降低了线粒体呼吸,诱导了代谢主开关 AMP 激活蛋白激酶 (AMPK) 的磷酸化,并减少了培养的原代小鼠星形胶质细胞中的糖原储存。根据这些数据和我们对文献的讨论,线粒体 sAC 作为星形胶质细胞生物能学的关键调节因子出现。最后,我们讨论了在星形胶质细胞中使用当前可用的药理学工具化合物研究细胞质与线粒体 sAC 的功能和代谢作用所面临的挑战。

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