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首页> 外文期刊>Cell Reports >Assembly, Secretory Pathway Trafficking, and Surface Delivery of Kainate Receptors Is Regulated by Neuronal Activity
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Assembly, Secretory Pathway Trafficking, and Surface Delivery of Kainate Receptors Is Regulated by Neuronal Activity

机译:海藻酸盐受体的组装,分泌途径的运输和表面传递受神经元活动的调节。

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摘要

Ionotropic glutamate receptor (iGluR) trafficking and function underpin excitatory synaptic transmission and plasticity and shape neuronal networks. It is well established that the transcription, translation, and endocytosis/recycling of iGluRs are all regulated by neuronal activity, but much less is known about the activity dependence of iGluR transport through the secretory pathway. Here, we use the kainate receptor subunit GluK2 as a model iGluR cargo to show that the assembly, early secretory pathway trafficking, and surface delivery of iGluRs are all controlled by neuronal activity. We show that the delivery of de novo kainate receptors is differentially regulated by modulation of GluK2 Q/R editing, PKC phosphorylation, and PDZ ligand interactions. These findings reveal that, in addition to short-term regulation of iGluRs by recycling/endocytosis and long-term modulation by altered transcription/translation, the trafficking of iGluRs through the secretory pathway is under tight activity-dependent control to determine the numbers and properties of surface-expressed iGluRs.
机译:离子型谷氨酸受体(iGluR)的运输和功能支持兴奋性突触传递和可塑性,并塑造神经元网络。众所周知,iGluR的转录,翻译和内吞/再循环均受神经元活性的调控,但对iGluR通过分泌途径转运的活性依赖性知之甚少。在这里,我们使用海藻酸盐受体亚基GluK2作为模型iGluR货物,以显示iGluR的组装,早期分泌途径运输和表面递送均受神经元活动控制。我们表明,从头的海藻酸酯受体的交付是由调节GluK2 Q / R编辑,PKC磷酸化和PDZ配体相互作用的差异调节的。这些发现表明,除了通过再循环/内吞作用对iGluR进行短期调控,以及通过改变转录/翻译对iGluR进行长期调控外,通过分泌途径对iGluR的运输也受到严格的活动依赖性控制,以确定其数量和性质。表面表达的iGluR。

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