首页> 美国卫生研究院文献>The Journal of Neuroscience >NMDA Receptor 2 (NR2) C-Terminal Control of NR Open Probability Regulates Synaptic Transmission and Plasticity at a Cerebellar Synapse
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NMDA Receptor 2 (NR2) C-Terminal Control of NR Open Probability Regulates Synaptic Transmission and Plasticity at a Cerebellar Synapse

机译:NMDA受体2(NR2)C端控制的NR开放概率调节小脑突触的突触传递和可塑性。

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摘要

The C-terminal domain of NMDA receptor 2 (NR2) subunits has been proposed to play a critical role in regulating NMDA receptor localization and function in postsynaptic densities. However, the mechanism of this regulation is not completely understood. In this paper we show that C-terminal truncation of NR2A and NR2C subunits in mice (NR2A/CΔC/ΔC) impairs synaptic transmission and plasticity at the cerebellar mossy fiber–granule cell relay. Activation of synaptic NMDA receptors could be distinguished from that of extrasynaptic receptors by using the glutamate scavenger glutamate pyruvate transaminase and the open channel blocker MK801. NR2A/CΔC/ΔC mice exhibited a specific reduction in synaptic NMDA receptor activation attributable to a severalfold decrease in channel open probability but not channel conductance. Immunodetection revealed normal developmental expression of NR subunit proteins. Quantitative immunogold analyses with an antibody to NR1 indicated that the reduction in receptor activation is not attributed to a reduced number of NR1-containing receptors in postsynaptic densities. Thus, NR2A/NR2C subunits and particularly their C termini regulate synaptic NMDA receptor activation and function by enhancing channel open probability, which is critical for long-term potentiation induction.
机译:有人提出NMDA受体2(NR2)亚基的C末端域在调节NMDA受体的定位和突触后密度的功能中发挥关键作用。但是,这种调节的机理尚未完全了解。在本文中,我们显示了小鼠NR2A和NR2C亚基的C端截短(NR2A / C ΔC/ΔC)损害了小脑苔藓纤维-颗粒细胞中继的突触传递和可塑性。通过使用谷氨酸清除剂谷氨酸丙酮酸转氨酶和开放通道阻滞剂MK801,可以将突触NMDA受体的活化与突触外受体的活化区分开。 NR2A / C ΔC/ΔC小鼠的突触NMDA受体激活特异性降低,这归因于通道开放概率降低了几倍,而不是通道电导。免疫检测显示NR亚基蛋白的正常发育表达。用针对NR1的抗体进行的定量免疫金分析表明,受体激活的降低并非归因于突触后密度中含NR1受体数量的减少。因此,NR2A / NR2C亚基,尤其是它们的C末端,通过增强通道开放概率来调节突触NMDA受体的激活和功能,这对于长期增强诱导至关重要。

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