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A negative feedback loop controls NMDA receptor function in cortical interneurons via neuregulin 2/ErbB4 signalling

机译:负反馈回路通过神经调节蛋白2 / ErbB4信号控制皮质神经元中的NMDA受体功能

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摘要

The neuregulin receptor ErbB4 is an important modulator of GABAergic interneurons and neural network synchronization. However, little is known about the endogenous ligands that engage ErbB4, the neural processes that activate them or their direct downstream targets. Here we demonstrate, in cultured neurons and in acute slices, that the NMDA receptor is both effector and target of neuregulin 2 (NRG2)/ErbB4 signalling in cortical interneurons. Interneurons co-express ErbB4 and NRG2, and pro-NRG2 accumulates on cell bodies atop subsurface cisternae. NMDA receptor activation rapidly triggers shedding of the signalling-competent NRG2 extracellular domain. In turn, NRG2 promotes ErbB4 association with GluN2B-containing NMDA receptors, followed by rapid internalization of surface receptors and potent downregulation of NMDA but not AMPA receptor currents. These effects occur selectively in ErbB4-positive interneurons and not in ErbB4-negative pyramidal neurons. Our findings reveal an intimate reciprocal relationship between ErbB4 and NMDA receptors with possible implications for the modulation of cortical microcircuits associated with cognitive deficits in psychiatric disorders.
机译:神经调节蛋白受体ErbB4是GABA能神经元和神经网络同步的重要调节剂。但是,关于与ErbB4结合的内源性配体,激活它们的神经过程或它们的直接下游靶标知之甚少。在这里,我们证明,在培养的神经元和急性切片中,NMDA受体既是皮质中间神经元中的神经调节蛋白2(NRG2)/ ErbB4信号传导的效应物和靶标。 Interneurons共表达ErbB4和NRG2,而pro-NRG2则积聚在地​​下水池上方的细胞体上。 NMDA受体激活迅速触发具有信号功能的NRG2细胞外结构域脱落。反过来,NRG2促进ErbB4与含GluN2B的NMDA受体的缔合,随后表面受体的快速内在化和NMDA的强效下调,而不是AMPA受体电流的下调。这些作用在ErbB4阳性的中间神经元中有选择地发生,而在ErbB4阴性的锥体神经元中则没有。我们的发现揭示了ErbB4和NMDA受体之间的亲密关系,可能对与精神病患者认知功能障碍相关的皮层微电路的调节产生影响。

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