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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Glutamine synthetase enhances the clearance of extracellular glutamate by the neural retina.
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Glutamine synthetase enhances the clearance of extracellular glutamate by the neural retina.

机译:谷氨酰胺合成酶增强神经视网膜对细胞外谷氨酸的清除。

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Clearance of synaptic glutamate by glial cells is required for the normal function of excitatory synapses and for prevention of neurotoxicity. Although the regulatory role of glial glutamate transporters in glutamate clearance is well established, little is known about the influence of glial glutamate metabolism on this process. This study examines whether glutamine synthetase (GS), a glial-specific enzyme that amidates glutamate to glutamine, affects the uptake of glutamate. Retinal explants were incubated in the presence of [14C]glutamate and glutamate uptake was assessed by measurement of the amount of radioactively labeled molecules within the cells and the amount of [14C]glutamine released to the medium. An increase in GS expression in Muller glial cells, caused by induction of the endogenous gene, did not affect the amount of glutamate accumulated within the cells, but led to a dramatic increase in the amount of glutamine released. This increase, which was directly correlated with the level of GS expression, was dependent on the presence of external sodium ions, and could be completely abolished by methionine sulfoximine, a specific inhibitor of GS activity. Our results demonstrate that GS activity significantly influences the uptake of glutamate by the neural retina and suggest that this enzyme may represent an important target for neuroprotective strategies.
机译:神经胶质细胞清除突触谷氨酸是兴奋性突触的正常功能和预防神经毒性所必需的。尽管神经胶质谷氨酸转运蛋白在谷氨酸清除中的调节作用已被很好地确立,但是关于神经胶质谷氨酸代谢对该过程的影响知之甚少。这项研究检查了将谷氨酸酰胺化为谷氨酰胺的神经胶质特异性酶谷氨酰胺合成酶(GS)是否会影响谷氨酸的吸收。在[14C]谷氨酸存在下孵育视网膜外植体,并通过测量细胞内放射性标记分子的量和释放到培养基中的[14C]谷氨酰胺的量来评估谷氨酸的摄取。由内源基因的诱导引起的穆勒神经胶质细胞中GS表达的增加并不影响细胞内积累的谷氨酸的量,但导致释放的谷氨酰胺的量显着增加。这种增加与GS的表达水平直接相关,取决于外部钠离子的存在,并且可以被蛋氨酸硫代嘧啶(一种特定的GS活性抑制剂)完全消除。我们的结果表明,GS活性显着影响神经视网膜对谷氨酸的吸收,并表明该酶可能代表了神经保护策略的重要靶标。

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