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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Albumin promotes neuronal survival by increasing the synthesis and release of glutamate.
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Albumin promotes neuronal survival by increasing the synthesis and release of glutamate.

机译:白蛋白通过增加谷氨酸的合成和释放来促进神经元存活。

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It is well known that the presence of albumin within the brain and the CSF is developmentally regulated. However, the physiological relevance of this phenomenon is not well established. We have previously shown that albumin specifically increases the flux of glucose and lactate through the pyruvate dehydrogenase reaction in astrocytes. Here we show that, in neurones, albumin also increases the oxidation of glucose and lactate through the pyruvate dehydrogenase-catalysed reaction, the final purpose of this being the synthesis of glutamate. Thus, in neurones, the presence of albumin strongly increased the synthesis and release of glutamate to the extracellular medium. Our results also suggest that glutamate release caused by albumin is designed to promote neuronal survival. Thus, under culture conditions in which neurones die by apoptosis, the presence of albumin promoted neuronal survival and maintained the differentiation programme of these cells, as judged by the expression of the axonal protein, GAP-43. The effect of albumin on neuronal survival was counteracted by the presence of DNQX, an antagonist of non-NMDA-glutamate receptors, suggesting that the glutamate synthesized and released due to the presence of albumin is responsible for neuronal survival. In addition, the effect of albumin seemed to depend on the activity of the NGF receptor, TrkA, suggesting that the glutamate synthesized and released due to the presence of albumin promotes neuronal survival through the activity of TrkA.
机译:众所周知,大脑和脑脊液中白蛋白的存在受到发育的调节。但是,这种现象的生理相关性尚不明确。先前我们已经表明白蛋白通过星形胶质细胞中的丙酮酸脱氢酶反应特异性地增加了葡萄糖和乳酸的通量。在这里,我们表明,在神经元中,白蛋白还通过丙酮酸脱氢酶催化的反应增加葡萄糖和乳酸的氧化,其最终目的是合成谷氨酸。因此,在神经元中,白蛋白的存在强烈增加了谷氨酸向细胞外培养基的合成和释放。我们的结果还表明,白蛋白引起的谷氨酸释放旨在促进神经元存活。因此,在神经元由于细胞凋亡而死亡的培养条件下,白蛋白的存在促进了神经元的存活并维持了这些细胞的分化程序,这由轴突蛋白GAP-43的表达来判断。非NMDA-谷氨酸受体的拮抗剂DNQX的存在抵消了白蛋白对神经元存活的影响,这表明由于存在白蛋白而合成和释放的谷氨酸对神经元存活负责。另外,白蛋白的作用似乎取决于NGF受体TrkA的活性,这表明由于存在白蛋白而合成和释放的谷氨酸盐通过TrkA的活性促进神经元存活。

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