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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Antagonistic effects of TrkB and p75(NTR) on NMDA receptor currents in post-synaptic densities transplanted into Xenopus oocytes.
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Antagonistic effects of TrkB and p75(NTR) on NMDA receptor currents in post-synaptic densities transplanted into Xenopus oocytes.

机译:TrkB和p75(NTR)对移植到非洲爪蟾卵母细胞中突触后密度中NMDA受体电流的拮抗作用。

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Brain-derived neurotrophic factor (BDNF) and its receptor TrkB are essential regulators of synaptic function in the adult CNS. A TrkB-mediated effect at excitatory synapses is enhancement of NMDA receptor (NMDA-R)-mediated currents. Recently, opposing effects of TrkB and the pan-neurotrophin receptor p75(NTR) on long-term synaptic depression and long-term potentiation have been reported in the hippocampus. To further study the regulation of NMDA-Rs by neurotrophin receptors in their native protein environment, we micro-transplanted rat forebrain post-synaptic densities (PSDs) into Xenopus oocytes. One-minute incubations of oocytes with BDNF led to dual effects on NMDA-R currents: either TrkB-dependent potentiation or TrkB-independent inhibition were observed. Pro-nerve growth factor, a ligand for p75(NTR) but not for TrkB, produced a reversible, dose-dependent, TrkB-independent and p75(NTR)-dependent inhibition of NMDA-Rs. Fractionation experiments showed that p75(NTR) is highly enriched in the PSD protein fraction. Immunoprecipitation and pull-down experiments further revealed that p75(NTR) is a core component of the PSD, where it interacts with the PDZ3 domain of the scaffolding protein SAP90/PSD-95. Our data provide striking evidence for a rapid inhibitory effect of p75(NTR) on NMDA-R currents that antagonizes TrkB-mediated NMDA-R potentiation. These opposing mechanisms might be present in a large proportion of forebrain synapses and may contribute importantly to synaptic plasticity.
机译:脑源性神经营养因子(BDNF)及其受体TrkB是成人中枢神经系统突触功能的重要调节剂。 TrkB介导的兴奋性突触的作用是增强NMDA受体(NMDA-R)介导的电流。最近,在海马中已经报道了TrkB和泛神经营养蛋白受体p75(NTR)对长期突触抑制和长期增强的相反作用。为了进一步研究神经营养蛋白受体在其天然蛋白环境中对NMDA-Rs的调节,我们将大鼠前脑突触后密度(PSDs)微移植到爪蟾卵母细胞中。用BDNF孵育卵母细胞一分钟对NMDA-R电流产生双重影响:观察到TrkB依赖性增强或TrkB依赖性抑制。神经生长因子,p75(NTR)的配体而不是TrkB的配体,对NMDA-Rs产生可逆的,剂量依赖性,TrkB依赖性和p75(NTR)依赖性抑制。分馏实验表明,p75(NTR)在PSD蛋白组分中高度富集。免疫沉淀和下拉实验进一步揭示p75(NTR)是PSD的核心成分,在其中它与支架蛋白SAP90 / PSD-95的PDZ3域相互作用。我们的数据为p75(NTR)对NMDA-R电流的快速抑制作用提供了惊人的证据,该电流可拮抗TrkB介导的NMDA-R增强作用。这些相反的机制可能存在于大部分前脑突触中,并且可能对突触可塑性起重要作用。

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