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脑糖原——关于其代谢功能及亚细胞水平调控的新观点

Brain glycogen-new perspectives on its metabolic function and regulation at the subcellular level.

作者信息

Obel Linea F, Müller Margit S, Walls Anne B, Sickmann Helle M, Bak Lasse K, Waagepetersen Helle S, Schousboe Arne

机构信息

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

出版信息

Front Neuroenergetics. 2012 Mar 2;4:3. doi: 10.3389/fnene.2012.00003. eCollection 2012.

Abstract

Glycogen is a complex glucose polymer found in a variety of tissues, including brain, where it is localized primarily in astrocytes. The small quantity found in brain compared to e.g., liver has led to the understanding that brain glycogen is merely used during hypoglycemia or ischemia. In this review evidence is brought forward highlighting what has been an emerging understanding in brain energy metabolism: that glycogen is more than just a convenient way to store energy for use in emergencies-it is a highly dynamic molecule with versatile implications in brain function, i.e., synaptic activity and memory formation. In line with the great spatiotemporal complexity of the brain and thereof derived focus on the basis for ensuring the availability of the right amount of energy at the right time and place, we here encourage a closer look into the molecular and subcellular mechanisms underlying glycogen metabolism. Based on (1) the compartmentation of the interconnected second messenger pathways controlling glycogen metabolism (calcium and cAMP), (2) alterations in the subcellular location of glycogen-associated enzymes and proteins induced by the metabolic status and (3) a sequential component in the intermolecular mechanisms of glycogen metabolism, we suggest that glycogen metabolism in astrocytes is compartmentalized at the subcellular level. As a consequence, the meaning and importance of conventional terms used to describe glycogen metabolism (e.g., turnover) is challenged. Overall, this review represents an overview of contemporary knowledge about brain glycogen and its metabolism and function. However, it also has a sharp focus on what we do not know, which is perhaps even more important for the future quest of uncovering the roles of glycogen in brain physiology and pathology.

摘要

糖原是一种复杂的葡萄糖聚合物,存在于包括大脑在内的多种组织中,在大脑中它主要定位于星形胶质细胞。与例如肝脏相比,大脑中发现的糖原数量较少,这使得人们认为大脑糖原仅在低血糖或缺血时使用。在这篇综述中,提出了一些证据,突出了在脑能量代谢方面出现的一种新认识:糖原不仅仅是一种在紧急情况下储存能量以供使用的便捷方式——它是一种高度动态的分子,对脑功能,即突触活动和记忆形成具有多方面的影响。鉴于大脑具有巨大的时空复杂性,以及由此产生的对在正确的时间和地点确保适量能量供应基础的关注,我们在此鼓励更深入地研究糖原代谢背后的分子和亚细胞机制。基于(1)控制糖原代谢的相互连接的第二信使途径(钙和环磷酸腺苷)的区室化,(2)代谢状态诱导的糖原相关酶和蛋白质亚细胞定位的改变,以及(3)糖原代谢分子间机制中的一个顺序成分,我们认为星形胶质细胞中的糖原代谢在亚细胞水平上是区室化的。因此,用于描述糖原代谢的传统术语(例如周转率)的含义和重要性受到了挑战。总体而言,这篇综述概述了关于脑糖原及其代谢和功能的当代知识。然而,它也密切关注了我们尚不知道的内容,这对于未来揭示糖原在脑生理学和病理学中的作用的探索可能更为重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e18/3291878/6750a0411e11/fnene-04-00003-g0001.jpg

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