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糖原在中枢神经系统中的新作用

Emerging Roles for Glycogen in the CNS.

作者信息

Waitt Alice E, Reed Liam, Ransom Bruce R, Brown Angus M

机构信息

School of Life Sciences, University of Nottingham Nottingham, UK.

Department of Neurology, University of Washington Seattle, WA, USA.

出版信息

Front Mol Neurosci. 2017 Mar 16;10:73. doi: 10.3389/fnmol.2017.00073. eCollection 2017.

Abstract

The ability of glycogen, the depot into which excess glucose is stored in mammals, to act as a source of rapidly available energy substrate, has been exploited by several organs for both general and local advantage. The liver, expressing the highest concentration of glycogen maintains systemic normoglycemia ensuring the brain receives a supply of glucose in excess of demand. However the brain also contains glycogen, although its role is more specialized. Brain glycogen is located exclusively in astrocytes in the adult, with the exception of pathological conditions, thus in order to benefit neurons, and energy conduit (lactate) is trafficked inter-cellularly. Such a complex scheme requires cell type specific expression of a variety of metabolic enzymes and transporters. Glycogen supports neural elements during withdrawal of glucose, but once the limited buffer of glycogen is exhausted neural function fails and irreversible injury ensues. Under physiological conditions glycogen acts to provide supplemental substrates when ambient glucose is unable to support function during increased energy demand. Glycogen also supports learning and memory where it provides lactate to neurons during the conditioning phase of long-term potentiation (LTP), an experimental correlate of learning. Inhibiting the breakdown of glycogen or intercellular transport of lactate in rat models inhibits the retention of memory. Our current understanding of the importance of brain glycogen is expanding to encompass roles that are fundamental to higher brain function.

摘要

糖原是哺乳动物储存多余葡萄糖的仓库,它作为一种快速可用能量底物来源的能力,已被多个器官利用以实现整体和局部的优势。肝脏中糖原浓度最高,它维持全身正常血糖水平,确保大脑获得超出需求的葡萄糖供应。然而,大脑中也含有糖原,尽管其作用更为特殊。在成人大脑中,糖原仅存在于星形胶质细胞中,病理情况除外,因此为了使神经元受益,一种能量传导物质(乳酸)会在细胞间进行转运。这样一个复杂的机制需要多种代谢酶和转运蛋白在细胞类型上特异性表达。在葡萄糖供应不足时,糖原可为神经细胞提供支持,但一旦有限的糖原储备耗尽,神经功能就会衰退并导致不可逆转的损伤。在生理条件下,当环境葡萄糖在能量需求增加时无法维持功能时,糖原可作为补充底物发挥作用。糖原还对学习和记忆有支持作用,在长期增强(LTP)的条件化阶段,糖原会为神经元提供乳酸,LTP是学习的一种实验相关指标。在大鼠模型中,抑制糖原分解或乳酸的细胞间转运可抑制记忆的保持。我们目前对大脑糖原重要性的理解正在不断扩展,以涵盖对高等脑功能至关重要的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a40/5352909/c0616d763905/fnmol-10-00073-g0001.jpg

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