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大鼠嗅球分离中间神经元中(R,S)α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)受体的钙离子通透性特性

Ca2+ ion permeability properties of (R,S) alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionate (AMPA) receptors in isolated interneurons from the olfactory bulb of the rat.

作者信息

Jardemark K, Nilsson M, Muyderman H, Jacobson I

机构信息

Department of Anatomy and Cellbiology, University of Göteborg, Sweden.

出版信息

J Neurophysiol. 1997 Feb;77(2):702-8. doi: 10.1152/jn.1997.77.2.702.

Abstract

The aim of the study was to investigate the divalent cation permeability of native alpha-amino-3-hydroxy-5-methyl-4-isoxazole-propionate (AMPA) receptors expressed in interneurons of the olfactory bulb. Kainic acid (KA) was used as agonist to activate AMPA-receptor-mediated currents, which were recorded with the use of the patch-clamp technique. In interneurons acutely isolated from the olfactory bulb, the current responses to KA showed linear/outwardly rectifying current-voltage (I-V) relationships with a positive average reversal potential of +7 mV in normal external medium (1 mM Ca2+, 1 mM Mg2+). Raising the external Ca2+ concentration to 10 mM suppressed the amplitude, whereas omission of Ca2+ enhanced the amplitude of the current. Spectral analysis of the increase in current variance produced by KA indicated that the decreased amplitude observed in 10 mM Ca2+ was accompanied by a reduction in the apparent single-channel conductance. Raising the concentration of Mg2+ from 1 to 10 mM had a weak depressant effect on the KA-evoked current amplitude. No shift in the reversal potential was observed when the concentration of Ca2+ or Mg2+ was changed from 1 to 10 mM. Increasing the external medium concentration of Ca2+ to 60 mM not only further depressed the amplitudes of the KA-evoked currents but also gave a pronounced leftward shift in the average reversal potential to -32 +/- 9 (SE) mV (N = 7). For neurons in primary culture, current responses to KA also showed linear/outwardly rectifying I-V relationships with a positive average reversal potential in normal external medium. Substituting N-methylglucamine for Na+ and increasing the Ca2+ concentration to 10 mM gave a leftward shift in the average reversal potential from +9 +/- 3 mV to -47 +/- 4 mV (N = 11) and caused a marked reduction in the amplitude of the KA-evoked currents at negative potentials. The permeability properties of the studied AMPA receptors were well predicted by the Eyring rate model (symmetrical, 2 barriers, 1 site). The model gave a pCa2+/pK+ permeability ratio of 0.06 for acutely isolated interneurons and 0.14 for interneurons in primary culture. The constant field theory, which failed to successfully reproduce all the experimental data, gave corresponding low permeability ratios of 0.18 and 0.40 for acutely isolated cells and cells in primary culture, respectively. Thus it is concluded that interneurons in the olfactory bulb mainly express AMPA receptors with low permeability to Ca2+ ions.

摘要

本研究的目的是调查嗅球中间神经元中天然α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)受体的二价阳离子通透性。使用 kainic 酸(KA)作为激动剂来激活AMPA受体介导的电流,该电流通过膜片钳技术进行记录。在从嗅球急性分离的中间神经元中,对KA的电流反应在正常外部介质(1 mM Ca2+,1 mM Mg2+)中显示出线性/外向整流电流-电压(I-V)关系,平均反转电位为 +7 mV。将外部Ca2+浓度提高到10 mM会抑制电流幅度,而省略Ca2+则会增强电流幅度。对KA产生的电流方差增加进行频谱分析表明,在10 mM Ca2+中观察到的幅度降低伴随着表观单通道电导的降低。将Mg2+浓度从1 mM提高到10 mM对KA诱发的电流幅度有微弱的抑制作用。当Ca2+或Mg2+浓度从1 mM变为10 mM时,未观察到反转电位的偏移。将外部介质中Ca2+浓度增加到60 mM不仅进一步抑制了KA诱发电流的幅度,还使平均反转电位明显向左偏移至 -32 +/- 9(SE)mV(N = 7)。对于原代培养的神经元,对KA的电流反应在正常外部介质中也显示出线性/外向整流I-V关系,平均反转电位为正值。用N-甲基葡糖胺替代Na+并将Ca2+浓度增加到10 mM,使平均反转电位从 +9 +/- 3 mV向左偏移至 -47 +/- 4 mV(N = 11),并导致负电位下KA诱发电流的幅度显著降低。所研究的AMPA受体的通透性特性通过艾林速率模型(对称,2个屏障,1个位点)得到了很好的预测。该模型给出急性分离的中间神经元的pCa2+/pK+通透性比为0.06,原代培养的中间神经元为0.14。未能成功再现所有实验数据的恒定场理论分别给出急性分离细胞和原代培养细胞的相应低通透性比为0.18和0.40。因此得出结论,嗅球中的中间神经元主要表达对Ca2+离子通透性低的AMPA受体。

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