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Astrocyte NMDA receptors' activity sustains neuronal survival through a Cdk5-Nrf2 pathway

机译:星形胶质细胞NMDA受体的活性通过CDK5-NRF2途径维持神经元生存率

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Neurotransmission unavoidably increases mitochondrial reactive oxygen species. However, the intrinsic antioxidant defense of neurons is weak and hence the mechanism whereby these cells are physiologically protected against oxidative damage is unknown. Here we found that the antioxidant defense of neurons is repressed owing to the continuous protein destabilization of the master antioxidant transcriptional activator, nuclear factor-erythroid 2-related factor-2 (Nrf2). By contrast, Nrf2 is highly stable in neighbor astrocytes explaining their robust antioxidant defense and resistance against oxidative stress. We also show that subtle and persistent stimulation of N-methyl-D-aspartate receptors (NMDAR) in astrocytes, through a mechanism not requiring extracellular Ca2+ influx, upregulates a signal transduction pathway involving phospholipase C-mediated endoplasmic reticulum release of Ca2+ and protein kinase Cd activation. Active protein kinase Cd promotes, by phosphorylation, the stabilization of p35, a cyclin-dependent kinase-5 (Cdk5) cofactor. Active p35/Cdk5 complex in the cytosol phosphorylates Nrf2 at Thr395, Ser433 and Thr439 that is sufficient to promote Nrf2 translocation to the nucleus and induce the expression of antioxidant genes. Furthermore, this Cdk5-Nrf2 transduction pathway boosts glutathione metabolism in astrocytes efficiently protecting closely spaced neurons against oxidative damage. Thus, intercellular communication through NMDAR couples neurotransmission with neuronal survival.
机译:神经递质不可避免地增加线粒体反应性氧。然而,神经元的内在抗氧化防御是薄弱的,因此这种细胞在生理保护免受氧化损伤的机制是未知的。在这里,我们发现由于母抗氧化转录激​​活剂,核因子 - 红外2-相关因子-2(NRF2)的连续蛋白质不稳定而抑制神经元的抗氧化防御。相比之下,NRF2在邻居星形胶质细胞中具有高度稳定的,解释其稳健的抗氧化防御和抗氧化应激的抵抗力。我们还表明,通过不需要细胞外Ca 2 +流入的机制,通过不需要细胞外的机制来表明对星形胶质细胞的N-甲基-D-天冬氨酸受体(NMDAR)的微妙和持续刺激,上调涉及CA2 +和蛋白激酶的磷脂酶C介导的内质网释放的信号转导通路CD激活。活性蛋白激酶CD通过磷酸化促进P35,系蛋白依赖性激酶-5(CDK5)辅因子。在Cytosol中的活性P35 / CDK5复合物在THR395,SER433和THR439处的NRF2,足以促进NRF2易位对核,诱导抗氧化基因的表达。此外,这种CDK5-NRF2转导途径在星形胶质细胞中有效地保护紧密间隔的神经元免受氧化损伤的谷胱甘肽来增强谷胱甘肽代谢。因此,通过NMDAR与神经元生存率进行间细胞间通信。

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