首页> 美国卫生研究院文献>The Journal of Biological Chemistry >PICK1-mediated Glutamate Receptor Subunit 2 (GluR2) Trafficking Contributes to Cell Death in Oxygen/Glucose-deprived Hippocampal Neurons
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PICK1-mediated Glutamate Receptor Subunit 2 (GluR2) Trafficking Contributes to Cell Death in Oxygen/Glucose-deprived Hippocampal Neurons

机译:PICK1介导的谷氨酸受体亚基2(GluR2)贩运 导致缺氧/缺糖海马细胞死亡 神经元

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摘要

Oxygen and glucose deprivation (OGD) induces delayed cell death in hippocampal CA1 neurons via Ca2+/Zn2+-permeable, GluR2-lacking AMPA receptors (AMPARs). Following OGD, synaptic AMPAR currents in hippocampal neurons show marked inward rectification and increased sensitivity to channel blockers selective for GluR2-lacking AMPARs. This occurs via two mechanisms: a delayed down-regulation of GluR2 mRNA expression and a rapid internalization of GluR2-containing AMPARs during the OGD insult, which are replaced by GluR2-lacking receptors. The mechanisms that underlie this rapid change in subunit composition are unknown. Here, we demonstrate that this trafficking event shares features in common with events that mediate long term depression and long term potentiation and is initiated by the activation of N-methyl-d-aspartic acid receptors. Using biochemical and electrophysiological approaches, we show that peptides that interfere with PICK1 PDZ domain interactions block the OGD-induced switch in subunit composition, implicating PICK1 in restricting GluR2 from synapses during OGD. Furthermore, we show that GluR2-lacking AMPARs that arise at synapses during OGD as a result of PICK1 PDZ interactions are involved in OGD-induced delayed cell death. This work demonstrates that PICK1 plays a crucial role in the response to OGD that results in altered synaptic transmission and neuronal death and has implications for our understanding of the molecular mechanisms that underlie cell death during stroke.
机译:缺氧和缺糖(OGD)通过Ca 2 + / Zn 2 + 渗透性,缺少GluR2的AMPA受体(AMPAR)诱导海马CA1神经元细胞延迟死亡。 OGD后,海马神经元中的突触AMPAR电流显示出明显的内向整流,并且对缺乏GluR2的AMPAR选择性选择性的通道阻滞剂敏感。这是通过两种机制发生的:在OGD损伤期间,GluR2 mRNA表达的延迟下调和含GluR2的AMPAR的快速内在化,这些机制被缺乏GluR2的受体所取代。导致亚基组成快速变化的机制尚不清楚。在这里,我们证明了这种贩运事件与介导长期抑郁和长期增强的事件具有共同的特征,并且是由N-甲基-d-天冬氨酸受体的激活引发的。使用生化和电生理学方法,我们表明,干扰PICK1 PDZ域相互作用的肽段会阻断OGD诱导的亚基组成转换,从而牵涉PICK1限制OGD期间突触中的GluR2。此外,我们表明,由于PICK1 PDZ相互作用,在OGD期间突触中出现的GluR2缺失AMPAR参与了 OGD诱导的延迟细胞死亡。这项工作证明了PICK1在 在对OGD的反应中起关键作用,导致突触改变 传播和神经元死亡,对我们的理解有影响 中风期间细胞死亡的分子机制。

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