首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Ischemia-like Oxygen and Glucose Deprivation Mediates Down-regulation of Cell Surface γ-Aminobutyric AcidB Receptors via the Endoplasmic Reticulum (ER) Stress-induced Transcription Factor CCAAT/Enhancer-binding Protein (C/EBP)-homologous Protein (CHOP)
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Ischemia-like Oxygen and Glucose Deprivation Mediates Down-regulation of Cell Surface γ-Aminobutyric AcidB Receptors via the Endoplasmic Reticulum (ER) Stress-induced Transcription Factor CCAAT/Enhancer-binding Protein (C/EBP)-homologous Protein (CHOP)

机译:缺血样氧和葡萄糖剥夺通过内质网(ER)应激诱导的转录因子CCAAT /增强子结合蛋白(C / EBP)-同源蛋白(CHOP)介导细胞表面γ-氨基丁酸B受体的下调

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摘要

Cerebral ischemia frequently leads to long-term disability and death. Excitotoxicity is believed to be the main cause for ischemia-induced neuronal death. Although a role of glutamate receptors in this process has been firmly established, the contribution of metabotropic GABAB receptors, which control excitatory neurotransmission, is less clear. A prominent characteristic of ischemic insults is endoplasmic reticulum (ER) stress associated with the up-regulation of the transcription factor CCAAT/enhancer-binding protein-homologous protein (CHOP). After inducing ER stress in cultured cortical neurons by sustained Ca2+ release from intracellular stores or by a brief episode of oxygen and glucose deprivation (in vitro model of cerebral ischemia), we observed an increased expression of CHOP accompanied by a strong reduction of cell surface GABAB receptors. Our results indicate that down-regulation of cell surface GABAB receptors is caused by the interaction of the receptors with CHOP in the ER. Binding of CHOP prevented heterodimerization of the receptor subunits GABAB1 and GABAB2 and subsequent forward trafficking of the receptors to the cell surface. The reduced level of cell surface receptors diminished GABAB receptor signaling and, thus, neuronal inhibition. These findings indicate that ischemia-mediated up-regulation of CHOP down-regulates cell surface GABAB receptors by preventing their trafficking from the ER to the plasma membrane. This mechanism leads to diminished neuronal inhibition and may contribute to excitotoxicity in cerebral ischemia.
机译:脑缺血经常导致长期残疾和死亡。兴奋毒性被认为是缺血诱导的神经元死亡的主要原因。尽管已经牢固地确定了谷氨酸受体在该过程中的作用,但是尚不清楚控制兴奋性神经传递的代谢型GABA B受体的作用。缺血性损伤的一个突出特征是与转录因子CCAAT /增强子结合蛋白同源蛋白(CHOP)上调相关的内质网(ER)应激。通过持续从细胞内储存释放Ca 2 + 或短暂缺氧和葡萄糖剥夺(脑缺血的体外模型)在培养的皮质神经元中诱导ER应激后,我们观察到CHOP的表达增加伴随着细胞表面GABAB受体的强烈减少。我们的结果表明,细胞表面GABA B受体的下调是由受体与ER中的CHOP相互作用引起的。 CHOP的结合阻止了受体亚基GABAB1和GABAB2的异源二聚化,并阻止了受体向细胞表面的正向转运。细胞表面受体水平的降低减少了GABAB受体的信号传导,从而减少了神经元抑制作用。这些发现表明,缺血介导的CHOP的上调通过阻止细胞表面GABAB受体从ER向质膜的转运而下调。这种机制导致神经元抑制作用减弱,并可能导致脑缺血的兴奋性毒性。

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