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首页> 外文期刊>Neurochemistry International: The International Journal for the Rapid Publication of Critical Reviews, Preliminary and Original Research Communications in Neurochemistry >Effects of ammonia on high affinity glutamate uptake and glutamate transporter EAAT3 expression in cultured rat cerebellar granule cells.
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Effects of ammonia on high affinity glutamate uptake and glutamate transporter EAAT3 expression in cultured rat cerebellar granule cells.

机译:氨对培养的大鼠小脑颗粒细胞中高亲和力谷氨酸摄取和谷氨酸转运蛋白EAAT3表达的影响。

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摘要

Increased levels of extracellular glutamate are a consistent feature of hepatic encephalopathy (HE) associated with liver failure and other hyperammonemic pathologies. Reduction of glutamate uptake has been described in ammonia-exposed cultured astrocytes, synaptosomes, and in animal models of hyperammonemia. In the present study, we examine the effects of pathophysiological concentrations of ammonia on D-aspartate (a non-metabolizable analog of glutamate) uptake by cultured rat cerebellar granule neurons. Exposure of these cells to ammonia resulted in time-dependent (24% reduction at 24h and 60% reduction at 5 days, P<0.001) and dose-dependent (21, 37, and 57% reduction at 1, 2.5, and 5mM for 5 days, P<0.01) suppression of D-aspartate uptake. Kinetic analyses revealed significant decreases in the velocity of uptake (V(max)) (37% decrease at 2.5mM NH(4)Cl, P<0.05 and 52% decrease at 5mM NH(4)Cl, P<0.001) as well as significant reductions in K(m) values (25% reduction at 2.5mM NH(4)Cl, P<0.05 and 45% reduction at 5mM NH(4)Cl, P<0.001). Western blotting, on the other hand, showed no significant changes in the neuronal glutamate transporter EAAC1/EAAT3 protein, the only glutamate transporter currently known to be expressed by these cells. In addition, 1H combined with 13C-NMR spectroscopy studies using the stable isotope [1-13C]-glucose demonstrated a significant increase in intracellular glutamate levels derived from the oxidative metabolism of glucose, rather than from the deamidation of exogenous glutamine in cultured granule neurons exposed to ammonia. The present study provides evidence that the effects of ammonia on glutamate uptake are not solely an astrocytic phenomenon and that unlike the astrocytic glutamate transporter counterpart, EAAT3 protein expression in cultured cerebellar granule cells is not down-regulated when exposed to ammonia. Decrease of glutamate uptake in these cellular preparations may afford an additional regulatory mechanism aimed at controlling intracellular levels of glutamateand ultimately the releasable pool of glutamate in neurons.
机译:细胞外谷氨酸水平的升高是与肝衰竭和其他高氨血症病理相关的肝性脑病(HE)的一致特征。在暴露于氨的培养星形胶质细胞,突触小体和高氨血症动物模型中,已经描述了谷氨酸摄取的减少。在本研究中,我们检查了病理生理浓度的氨对培养的大鼠小脑颗粒神经元摄取D-天门冬氨酸(谷氨酸的不可代谢类似物)的影响。这些细胞暴露于氨导致时间依赖性(24小时减少24%,5天减少60%,P <0.001)和剂量依赖性(1、2.5和5mM分别减少21、37和57%)。 5天,P <0.01)抑制D-天冬氨酸的摄取。动力学分析表明摄取速度(V(max))显着降低(2.5mM NH(4)Cl降低37%,P <0.05,5mM NH(4)Cl降低52%,P <0.001)显着降低K(m)值(在2.5mM NH(4)Cl中减少25%,P <0.05,在5mM NH(4)Cl中减少45%,P <0.001)。另一方面,Western印迹显示神经元谷氨酸转运蛋白EAAC1 / EAAT3蛋白没有明显变化,这是目前已知由这些细胞表达的唯一谷氨酸转运蛋白。此外,使用稳定同位素[1-13C]-葡萄糖进行的1H结合13C-NMR光谱研究表明,细胞内谷氨酸盐水平显着增加是由于葡萄糖的氧化代谢所致,而不是由于培养的颗粒神经元中外源性谷氨酰胺的脱酰胺化所致暴露于氨中。本研究提供了证据,表明氨对谷氨酸摄取的影响不仅是星形胶质细胞的现象,而且与星形胶质谷氨酸转运蛋白的对应物不同,当暴露于氨水时,培养的小脑颗粒细胞中的EAAT3蛋白表达不会下调。这些细胞制剂中谷氨酸摄取的减少可提供一种附加的调节机制,旨在控制细胞内谷氨酸水平,最终控制神经元中谷氨酸的可释放池。

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