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首页> 外文期刊>Neuropsychopharmacology >NPY Y1 Receptors Differentially Modulate GABAA and NMDA Receptors via Divergent Signal-Transduction Pathways to Reduce Excitability of Amygdala Neurons
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NPY Y1 Receptors Differentially Modulate GABAA and NMDA Receptors via Divergent Signal-Transduction Pathways to Reduce Excitability of Amygdala Neurons

机译:NPY Y1受体通过不同的信号传导途径差异性地调节GABAA和NMDA受体,以减少杏仁核神经元的兴奋性

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摘要

Neuropeptide Y (NPY) administration into the basolateral amygdala (BLA) decreases anxiety-like behavior, mediated in part through the Y1 receptor (Y1R) isoform. Activation of Y1Rs results in G-protein-mediated reduction of cAMP levels, which results in reduced excitability of amygdala projection neurons. Understanding the mechanisms linking decreased cAMP levels to reduced excitability in amygdala neurons is important for identifying novel anxiolytic targets. We studied the intracellular mechanisms of activation of Y1Rs on synaptic transmission in the BLA. Activating Y1Rs by [Leu31,Pro34]-NPY (L-P NPY) reduced the amplitude of evoked NMDA-mediated excitatory postsynaptic currents (eEPSCs), without affecting AMPA-mediated eEPSCs, but conversely increased the amplitude of GABAA-mediated evoked inhibitory postsynaptic currents (eIPSCs). Both effects were abolished by the Y1R antagonist, PD160170. Intracellular GDP-β-S, or pre-treatment with either forskolin or 8Br-cAMP, eliminated the effects of L-P NPY on both NMDA- and GABAA-mediated currents. Thus, both the NMDA and GABAA effects of Y1R activation in the BLA are G-protein-mediated and cAMP-dependent. Pipette inclusion of protein kinase A (PKA) catalytic subunit blocked the effect of L-P NPY on GABAA-mediated eIPSCs, but not on NMDA-mediated eEPSCs. Conversely, activating the exchange protein activated by cAMP (Epac) with 8CPT-2Me-cAMP blocked the effect of L-P NPY on NMDA-mediated eEPSCs, but not on GABAA-mediated eIPSCs. Thus, NPY regulates amygdala excitability via two signal-transduction events, with reduced PKA activity enhancing GABAA-mediated eIPSCs and Epac deactivation reducing NMDA-mediated eEPSCs. This multipathway regulation of NMDA- and GABAA-mediated currents may be important for NPY plasticity and stress resilience in the amygdala.
机译:将神经肽Y(NPY)施用到基底外侧杏仁核(BLA)中可减少部分通过Y1受体(Y1R)同工型介导的焦虑样行为。 Y1Rs的激活导致G蛋白介导的cAMP水平降低,从而导致杏仁核投射神经元的兴奋性降低。了解杏仁核神经元中降低的cAMP水平与减少的兴奋性相关的机制对于识别新型抗焦虑目标非常重要。我们研究了BLA中的Y1Rs突触传递激活的细胞内机制。通过[Leu31,Pro34] -NPY(LP NPY)激活Y1Rs降低了诱发的NMDA介导的兴奋性突触后电流(eEPSCs)的幅度,但不影响AMPA介导的eEPSCs,但相反地增加了GABAA介导的诱发的抑制性突触后电流( eIPSC)。 Y1R拮抗剂PD160170取消了这两种作用。细胞内GDP-β-S或用福司可林或8Br-cAMP进行的预处理消除了L-P NPY对NMDA和GABAA介导的电流的影响。因此,BLA中Y1R激活的NMDA和GABAA效应均是G蛋白介导的且依赖cAMP。移液管中包含蛋白激酶A(PKA)催化亚基,阻断了L-P NPY对GABAA介导的eIPSC的影响,但对NMDA介导的eEPSC却没有。相反,用8CPT-2Me-cAMP激活cAMP(Epac)激活的交换蛋白可阻断L-P NPY对NMDA介导的eEPSC的作用,但对GABAA介导的eIPSC却没有。因此,NPY通过两个信号转导事件来调节杏仁核的兴奋性,同时PKA活性降低,增强了GABAA介导的eIPSC,而Epac失活则降低了NMDA介导的eEPSC。 NMDA和GABAA介导的电流的这种多途径调节可能对杏仁核中的NPY可塑性和应力弹性具有重要意义。

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