首页> 美国卫生研究院文献>The Journal of Physiology >Plasticity of NMDA receptor-mediated excitatory postsynaptic currents at perforant path inputs to dendrite-targeting interneurons
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Plasticity of NMDA receptor-mediated excitatory postsynaptic currents at perforant path inputs to dendrite-targeting interneurons

机译:NMDA受体介导的兴奋性突触后电流在以树突为目标的中间神经元的穿孔路径输入处的可塑性。

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摘要

Synaptic plasticity of NMDA receptors (NMDARs) has been recently described in a number of brain regions and we have previously characterised LTP and LTD of glutamatergic NMDA receptor-mediated EPSCs (NMDAR-EPSCs) in granule cells of dentate gyrus. The functional significance of NMDAR plasticity at perforant path synapses on hippocampal network activity depends on whether this is a common feature of perforant path synapses on all postsynaptic target cells or if this plasticity occurs only at synapses on principal cells. We recorded NMDAR-EPSCs at medial perforant path synapses on interneurons in dentate gyrus which had significantly slower decay kinetics compared to those recorded in granule cells. NMDAR pharmacology in interneurons was consistent with expression of both GluN2B- and GluN2D-containing receptors. In contrast to previously described high frequency stimulation-induced bidirectional plasticity of NMDAR-EPSCs in granule cells, only LTD of NMDAR-EPSCs was induced in interneurons in our standard experimental conditions. In interneurons, LTD of NMDAR-EPSCs was associated with a loss of sensitivity to a GluN2D-selective antagonist and was inhibited by the actin stabilising agent, jasplakinolide. While LTP of NMDAR-EPSCs can be readily induced in granule cells, this form of plasticity was only observed in interneurons when extracellular calcium was increased above physiological concentrations during HFS or when PKC was directly activated by phorbol ester, suggesting that opposing forms of plasticity at inputs to interneurons and principal cells may act to regulate granule cell dendritic integration and processing.
机译:NMDA受体(NMDARs)的突触可塑性最近已在许多大脑区域进行了描述,并且我们先前已经对齿状回颗粒细胞中谷氨酸能NMDA受体介导的EPSC(NMDAR-EPSCs)的LTP和LTD进行了表征。 NMDAR可塑性在海马网络活动通路突触中的功能意义取决于这是否是所有突触后靶细胞上通路突触的共同特征,或者这种可塑性仅发生在主细胞突触上。我们在齿状回的中间神经元的内侧穿孔路径突触处记录了NMDAR-EPSC,与颗粒细胞中记录的相比,它们的衰变动力学明显更慢。中神经元的NMDAR药理学与含GluN2B和GluN2D受体的表达一致。与先前描述的颗粒细胞中NMDAR-EPSC的高频刺激诱导的双向可塑性相反,在我们的标准实验条件下,仅在中间神经元中诱导了NMDAR-EPSC的LTD。在interneurons中,NMDAR-EPSC的LTD与对GluN2D选择性拮抗剂的敏感性降低有关,并被肌动蛋白稳定剂jasplakinolide抑制。虽然可以很容易地在颗粒细胞中诱导NMDAR-EPSC的LTP,但这种形式的可塑性仅在HFS期间细胞外钙增加至高于生理浓度或当佛波酯直接激活PKC时才在中间神经元中观察到。向中间神经元和主要细胞的输入可能起到调节颗粒细胞树突整合和加工的作用。

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