Qu H, Konradsen J R, van Hengel M, Wolt S, Sonnewald U
Department of Clinical Neuroscience, Norwegian University of Science and Technology, Olav Kyrresgt. 3, N-7489 Trondheim, Norway.
J Neurosci Res. 2001 Dec 1;66(5):885-90. doi: 10.1002/jnr.10055.
To probe the effect of glutamine and GABA on metabolism of [U-(13)C]glutamate, cerebellar astrocytes were incubated with [U-(13)C]glutamate (0.5 mM) in the presence and absence of glutamine (2.5 mM) or GABA (0.2 mM). It could be shown that consumption of [U-(13)C]glutamate was decreased in the presence of glutamine and release of labeled aspartate and [1,2,3-(13)C]glutamate decreased as well, whereas the concentrations of these metabolites increased inside the cells. Glutamine decreased energy production from [U-(13)C]glutamate presumably by substituting for glutamate as an energy substrate. No additional effect was seen in the presence of both glutamine and GABA. When cerebellar granule neurons were incubated with [U-(13)C]glutamate (0.25 mM) and GABA (0.05 mM), less [U-(13)C]glutamate was used for energy production than in controls. Because the barbiturate thiopental did not elicit such response (Qu et al., 2000, Neurochem Int 37:207-215) it appears that GABA also has a metabolic function in the glutamatergic cerebellar granule neurons in contrast to the astrocytes.
为了探究谷氨酰胺和γ-氨基丁酸(GABA)对[U-(13)C]谷氨酸代谢的影响,将小脑星形胶质细胞在存在和不存在谷氨酰胺(2.5 mM)或GABA(0.2 mM)的情况下与[U-(13)C]谷氨酸(0.5 mM)一起孵育。结果表明,在存在谷氨酰胺的情况下,[U-(13)C]谷氨酸的消耗减少,标记天冬氨酸和[1,2,3-(13)C]谷氨酸的释放也减少,而这些代谢物在细胞内的浓度增加。谷氨酰胺可能通过替代谷氨酸作为能量底物来减少[U-(13)C]谷氨酸的能量产生。在同时存在谷氨酰胺和GABA的情况下未观察到额外的影响。当小脑颗粒神经元与[U-(13)C]谷氨酸(0.25 mM)和GABA(0.05 mM)一起孵育时,用于能量产生的[U-(13)C]谷氨酸比对照组少。由于巴比妥类药物硫喷妥钠不会引发这种反应(Qu等人,2000年,《神经化学国际》37:207-215),因此与星形胶质细胞相比,GABA在谷氨酸能小脑颗粒神经元中似乎也具有代谢功能。