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代谢型谷氨酸受体1信号通路的长期抑制

Long-term depression of mGluR1 signaling.

作者信息

Jin Yunju, Kim Sang Jeong, Kim Jun, Worley Paul F, Linden David J

机构信息

Department of Physiology, Seoul National University College of Medicine and Neuroscience Research Institute Medical Research Center, Korea.

出版信息

Neuron. 2007 Jul 19;55(2):277-87. doi: 10.1016/j.neuron.2007.06.035.

Abstract

Glutamate produces both fast excitation through activation of ionotropic receptors and slower actions through metabotropic receptors (mGluRs). To date, ionotropic but not metabotropic neurotransmission has been shown to undergo long-term synaptic potentiation and depression. Burst stimulation of parallel fibers releases glutamate, which activates perisynaptic mGluR1 in the dendritic spines of cerebellar Purkinje cells. Here, we show that the mGluR1-dependent slow EPSC and its coincident Ca transient were selectively and persistently depressed by repeated climbing fiber-evoked depolarization of Purkinje cells in brain slices. LTD(mGluR1) was also observed when slow synaptic current was evoked by exogenous application of a group I mGluR agonist, implying a postsynaptic expression mechanism. Ca imaging further revealed that LTD(mGluR1) was expressed as coincident attenuation of both limbs of mGluR1 signaling: the slow EPSC and PLC/IP3-mediated dendritic Ca mobilization. Thus, different patterns of neural activity can evoke LTD of either fast ionotropic or slow mGluR1-mediated synaptic signaling.

摘要

谷氨酸盐通过离子型受体的激活产生快速兴奋,并通过代谢型受体(mGluRs)产生较慢的作用。迄今为止,已证明离子型而非代谢型神经传递会经历长期的突触增强和抑制。平行纤维的爆发性刺激会释放谷氨酸盐,其激活小脑浦肯野细胞树突棘中的突触周围mGluR1。在此,我们表明,在脑片中,重复的攀缘纤维诱发的浦肯野细胞去极化会选择性且持续地抑制mGluR1依赖性慢兴奋性突触后电流(slow EPSC)及其同时发生的钙瞬变。当通过外源应用I组mGluR激动剂诱发慢突触电流时,也观察到了代谢型谷氨酸受体1依赖性长时程抑制(LTD(mGluR1)),这意味着存在一种突触后表达机制。钙成像进一步揭示,LTD(mGluR1)表现为mGluR1信号传导的两个分支同时衰减:慢EPSC和PLC/IP3介导的树突状钙动员。因此,不同模式的神经活动可以诱发快速离子型或慢mGluR1介导的突触信号传导的长时程抑制。

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Long-term depression of mGluR1 signaling.代谢型谷氨酸受体1信号通路的长期抑制
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