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海马锥体神经元中具有紧张性活性的GABAA受体表现出组成型的非GABA依赖性门控。

Tonically active GABAA receptors in hippocampal pyramidal neurons exhibit constitutive GABA-independent gating.

作者信息

McCartney Melissa R, Deeb Tarek Z, Henderson Tricia N, Hales Tim G

机构信息

Department of Pharmacology, The George Washington University, 2300 Eye Street NW, Washington, DC 20037, USA.

出版信息

Mol Pharmacol. 2007 Feb;71(2):539-48. doi: 10.1124/mol.106.028597. Epub 2006 Nov 7.

Abstract

Phasic and tonic inhibitory currents of hippocampal pyramidal neurons exhibit distinct pharmacological properties. Picrotoxin and bicuculline methiodide inhibited both components, consistent with a role for GABAA receptors; however, gabazine, at a concentration that abolished miniature GABAergic inhibitory postsynaptic currents and responses to exogenous GABA, had no effect on tonic currents. Because all GABA-activated GABAA receptors in pyramidal neurons are gabazine-sensitive, it follows that tonic currents are not GABA-activated. Furthermore, picrotoxin-sensitive spontaneous single-channel events recorded from outside-out patches had the same chord conductance as GABA-activated channels and were gabazine-resistant. Therefore, we hypothesize that GABAA receptors, constitutively active in the absence of GABA, mediate tonic current; the failure of gabazine to block tonic current reflects a lack of negative intrinsic efficacy of the antagonist. We compared the negative efficacies of bicuculline and gabazine using the general anesthetic propofol to directly activate GABAA receptors native to pyramidal neurons or alpha1beta3gamma2 receptors recombinantly expressed in human embryonic kidney 293 cells. Propofol activated gabazine-resistant, bicuculline-sensitive currents when applied to either preparation. Although gabazine had negligible efficacy as an inhibitor of propofol-activated currents, it prevented inhibition by bicuculline, which acts as an inverse agonist inhibiting GABA-independent gating. Recombinant alpha1beta1/3gamma2 receptors also mediated agonist-independent tonic currents that were resistant to gabazine and inhibited by bicuculline. Thus, gabazine is a competitive antagonist with negligible negative efficacy and is therefore unable to inhibit GABAA receptors that are active in the absence of GABA because of either anesthetic or spontaneous gating. Moreover, spontaneously active GABAA receptors mediate gabazine-resistant tonic currents in pyramidal neurons.

摘要

海马锥体神经元的时相性和紧张性抑制电流表现出不同的药理学特性。印防己毒素和甲碘化荷包牡丹碱可抑制这两种成分,这与GABAA受体的作用一致;然而,加巴喷丁在消除微小GABA能抑制性突触后电流以及对外源性GABA反应的浓度下,对紧张性电流没有影响。由于锥体神经元中所有GABA激活的GABAA受体都对加巴喷丁敏感,因此可以推断紧张性电流不是由GABA激活的。此外,从外向内膜片钳记录到的对印防己毒素敏感的自发单通道事件具有与GABA激活通道相同的弦电导,并且对加巴喷丁具有抗性。因此,我们推测在没有GABA时组成性激活的GABAA受体介导紧张性电流;加巴喷丁未能阻断紧张性电流反映了拮抗剂缺乏负性内在效能。我们使用全身麻醉药丙泊酚直接激活锥体神经元天然的GABAA受体或在人胚肾293细胞中重组表达的α1β3γ2受体,比较了荷包牡丹碱和加巴喷丁的负性效能。当应用于任何一种制剂时,丙泊酚均可激活对加巴喷丁具有抗性、对荷包牡丹碱敏感的电流。尽管加巴喷丁作为丙泊酚激活电流的抑制剂效能可忽略不计,但它可阻止荷包牡丹碱的抑制作用,荷包牡丹碱作为反向激动剂抑制不依赖GABA的门控。重组α1β1/3γ2受体也介导对加巴喷丁具有抗性且被荷包牡丹碱抑制的非激动剂依赖性紧张性电流。因此,加巴喷丁是一种负性效能可忽略不计的竞争性拮抗剂,因此无法抑制由于麻醉或自发门控而在没有GABA时处于激活状态的GABAA受体。此外,自发激活的GABAA受体介导锥体神经元中对加巴喷丁具有抗性的紧张性电流。

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