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新霉素、Mg2+和精胺对大鼠海马CA1锥体神经元NMDA受体的多个作用位点

Multiple sites of action of neomycin, Mg2+ and spermine on the NMDA receptors of rat hippocampal CA1 pyramidal neurones.

作者信息

Lu W Y, Xiong Z G, Orser B A, MacDonald J F

机构信息

Department of Pharmacology, Faculty of Medicine, University of Toronto, 1 King's College Circle, Toronto, Ontario, Canada M5S 1A8.

出版信息

J Physiol. 1998 Oct 1;512 ( Pt 1)(Pt 1):29-46. doi: 10.1111/j.1469-7793.1998.029bf.x.

Abstract
  1. The effects of neomycin on NMDA-evoked currents in isolated CA1 hippocampal pyramidal neurones were investigated and single channel activity was examined in outside-out patches taken from cultured hippocampal neurones. The effects of neomycin on two combinations of NMDA receptor subunits (NR1a-NR2A and NR1a-NR2B) expressed in human embryonic kidney (HEK293) cells were also studied. 2. Neomycin (0. 01-1 mM) caused a potentiation of NMDA-activated currents in all neurones examined. No evidence of a voltage-dependent depression was observed in whole-cell recordings. 3. In outside-out patch recordings relatively low concentrations (30 and 100 microM) of neomycin caused a voltage-dependent reduction in single channel current amplitude as well as a large increase in the frequency of channel opening. 4. In saturating concentrations of glycine, neomycin enhanced NMDA-activated currents and this glycine-independent enhancement was confirmed using recombinant NR1a-NR2B receptors. Neomycin substantially increased the potency of glycine for the receptor by reducing the rate of dissociation of glycine from the receptor. Neomycin demonstrated a glycine-dependent enhancement of currents mediated by the NR1a-NR2A combination of subunits but a paradoxical depression was observed in saturating concentrations of glycine. 5. Neomycin increased the rate of deactivation of glutamate-activated currents consistent with neomycin causing a reduction in the affinity of the receptor for agonist. 6. These results indicate that neomycin has multiple and complex effects on NMDA receptors.
摘要
  1. 研究了新霉素对分离的海马CA1区锥体神经元中NMDA诱发电流的影响,并在取自培养海马神经元的外向型膜片中检测了单通道活性。还研究了新霉素对在人胚肾(HEK293)细胞中表达的两种NMDA受体亚基组合(NR1a-NR2A和NR1a-NR2B)的影响。2. 新霉素(0.01-1 mM)使所有检测的神经元中NMDA激活电流增强。在全细胞记录中未观察到电压依赖性抑制的证据。3. 在外向型膜片记录中,相对低浓度(30和100 microM)的新霉素导致单通道电流幅度的电压依赖性降低以及通道开放频率的大幅增加。4. 在甘氨酸饱和浓度下,新霉素增强了NMDA激活电流,并且使用重组NR1a-NR2B受体证实了这种不依赖甘氨酸的增强作用。新霉素通过降低甘氨酸从受体上的解离速率,显著提高了甘氨酸对该受体的效力。新霉素显示出对由NR1a-NR2A亚基组合介导的电流的甘氨酸依赖性增强作用,但在甘氨酸饱和浓度下观察到矛盾的抑制作用。5. 新霉素增加了谷氨酸激活电流的失活速率,这与新霉素导致受体对激动剂的亲和力降低一致。6. 这些结果表明新霉素对NMDA受体具有多种复杂的作用。

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