首页> 美国卫生研究院文献>The Journal of Neuroscience >Long-Term Depression of NMDA Receptor-Mediated Synaptic Transmission Is Dependent on Activation of Metabotropic Glutamate Receptors and Is Altered to Long-Term Potentiation by Low Intracellular Calcium Buffering
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Long-Term Depression of NMDA Receptor-Mediated Synaptic Transmission Is Dependent on Activation of Metabotropic Glutamate Receptors and Is Altered to Long-Term Potentiation by Low Intracellular Calcium Buffering

机译:NMDA受体介导的突触传递的长期抑制取决于代谢型谷氨酸受体的激活并通过低细胞内钙缓冲作用改变为长期增强作用。

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摘要

Synaptic plasticity of NMDA receptor (NMDAR)-mediated transmission was investigated in the rat dentate gyrus in vitro. Isolated NMDAR EPSCs were recorded from granule cells of the dentate gyrus in response to stimulation of the medial perforant path. Long-term potentiation (LTP) or long-term depression (LTD) of NMDAR EPSCs was observed in response to brief high-frequency stimulation (HFS), with the direction and extent of plasticity dependent on the concentration and type (EGTA vs BAPTA) of the intracellular Ca2+ buffer. LTD was induced in higher concentrations of EGTA and BAPTA than LTP, and BAPTA was ∼100-fold more potent than EGTA. Although LTD was induced in a high concentration of EGTA (10 mm), a high concentration of BAPTA (10 mm) blocked both LTP and LTD. LTP of AMPA receptor (AMPAR)-EPSCs exhibited a lower dependency on Ca2+ buffering than LTP of NMDAR EPSCs, because LTP of AMPAR EPSCs was induced by HFS in high EGTA (10 mm). We also identified a role for metabotropic glutamate receptor 5 (mGluR5) in NMDAR plasticity. HFS LTD was blocked by the group I/II mGluR antagonist ((2S)-2-amino-2-[(1S, 2S)-2-carboxycycloprop-1-yl]-3(xanth-9-yl)propanoic acid) and by the mGluR5-selective antagonist 2-methyl-6-(phenylethynyl)pyridine hydrochloride (MPEP). Similarly, low-frequency stimulation-induced LTD of NMDAR EPSCs was also blocked by MPEP. These findings suggest that the direction of plasticity of NMDARs is determined by the intracellular free Ca2+ concentration and is dependent on activation of mGluR5.
机译:在大鼠齿状回中研究了NMDA受体(NMDAR)介导的传递的突触可塑性。响应于内侧穿孔路径的刺激,从齿状回的颗粒细胞中记录分离的NMDAR EPSC。响应短暂的高频刺激(HFS),观察到NMDAR EPSC的长期增强(LTP)或长期抑制(LTD),其可塑性的方向和程度取决于浓度和类型(EGTA与BAPTA)细胞内Ca 2 + 缓冲液的浓度。与LTP相比,LTD在更高浓度的EGTA和BAPTA中被诱导,而BAPTA的效力比EGTA高约100倍。尽管LTD是在高浓度的EGTA(10毫米)中诱导的,但高浓度的BAPTA(10毫米)却阻碍了LTP和LTD。 AMPA受体(AMPAR)-EPSC的LTP对Ca 2 + 缓冲的依赖性低于NMDAR EPSC的LTP,这是因为AMPAR EPSC的LTP是由高EGTA(10 mm)中的HFS诱导的。我们还确定了代谢型谷氨酸受体5(mGluR5)在NMDAR可塑性中的作用。 HFS LTD被I / II组mGluR拮抗剂((2S)-2-氨基-2-[(1S,2S)-2-羧基环丙-1-基] -3(黄嘌呤-9-基)丙酸封闭)通过mGluR5-选择性拮抗剂2-甲基-6-(苯基乙炔基)吡啶盐酸盐(MPEP)。同样,MPEP也阻断了低频刺激诱导的NMDAR EPSC的LTD。这些发现表明,NMDARs可塑性的方向取决于细胞内游离Ca 2 + 的浓度,并取决于mGluR5的激活。

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