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首页> 外文期刊>Neurochemical research >The Glutamine-Glutamate/GABA Cycle: Function, Regional Differences in Glutamate and GABA Production and Effects of Interference with GABA Metabolism
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The Glutamine-Glutamate/GABA Cycle: Function, Regional Differences in Glutamate and GABA Production and Effects of Interference with GABA Metabolism

机译:谷氨酰胺-谷氨酸/ GABA循环:功能,谷氨酸和GABA生产的区域差异以及干扰GABA代谢的影响

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The operation of a glutamine-glutamate/GABA cycle in the brain consisting of the transfer of glutamine from astrocytes to neurons and neurotransmitter glutamate or GABA from neurons to astrocytes is a well-known concept. In neurons, glutamine is not only used for energy production and protein synthesis, as in other cells, but is also an essential precursor for biosynthesis of amino acid neurotransmitters. An excellent tool for the study of glutamine transfer from astrocytes to neurons is [C-14]acetate or [C-13]acetate and the glial specific enzyme inhibitors, i.e. the glutamine synthetase inhibitor methionine sulfoximine and the tricarboxylic acid cycle (aconitase) inhibitors fluoro-acetate and -citrate. Acetate is metabolized exclusively by glial cells, and [C-13]acetate is thus capable when used in combination with magnetic resonance spectroscopy or mass spectrometry, to provide information about glutamine transfer. The present review will give information about glutamine trafficking and the tools used to map it as exemplified by discussions of published work employing brain cell cultures as well as intact animals. It will be documented that considerably more glutamine is transferred from astrocytes to glutamatergic than to GABAergic neurons. However, glutamine does have an important role in GABAergic neurons despite their capability of re-utilizing their neurotransmitter by re-uptake.
机译:谷氨酰胺-谷氨酸/ GABA循环在大脑中的运作是一个众所周知的概念,谷氨酰胺从星形胶质细胞转移到神经元,而神经递质谷氨酸或GABA从神经元转移到星形细胞。像其他细胞一样,在神经元中,谷氨酰胺不仅用于产生能量和蛋白质合成,而且还是氨基酸神经递质生物合成的重要前体。研究谷氨酰胺从星形胶质细胞向神经元转移的优秀工具是[C-14]乙酸盐或[C-13]乙酸盐和神经胶质特异性酶抑制剂,即谷氨酰胺合成酶抑制剂甲硫氨酸亚砜亚胺和三羧酸循环(阿尼可糖苷酶)抑制剂。氟乙酸盐和柠檬酸盐。乙酸盐仅由神经胶质细胞代谢,因此[C-13]乙酸盐在与磁共振波谱或质谱结合使用时能够提供有关谷氨酰胺转移的信息。本综述将提供有关谷氨酰胺贩运的信息以及用于绘制谷氨酰胺的工具,如对采用脑细胞培养以及完整动物的已发表著作的讨论所举例说明的。将会证明,从星形胶质细胞向谷氨酸能转移的谷氨酰胺比向GABA能神经元转移的谷氨酰胺要多得多。然而,尽管谷氨酰胺能够通过重新摄取来重新利用其神经递质,但在GABA能神经元中确实具有重要作用。

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