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大细胞神经分泌神经元中一种新型的γ-氨基丁酸A受体介导的抑制作用及其受神经胶质细胞的调节特性

Characterization of a novel tonic gamma-aminobutyric acidA receptor-mediated inhibition in magnocellular neurosecretory neurons and its modulation by glia.

作者信息

Park Jin Bong, Skalska Silvia, Stern Javier E

机构信息

Department of Psychiatry, University of Cincinnati, GRI-A Room 241, 2170 East Galbraith Road, Cincinnati, Ohio 45237, USA.

出版信息

Endocrinology. 2006 Aug;147(8):3746-60. doi: 10.1210/en.2006-0218. Epub 2006 May 4.

Abstract

In addition to mediating conventional quantal synaptic transmission (also known as phasic inhibition), gamma-aminobutyric acidA (GABAA) receptors have been recently shown to underlie a slower, persistent form of inhibition (tonic inhibition). Using patch-clamp electrophysiology and immunohistochemistry, we addressed here whether a GABAA receptor-mediated tonic inhibition is present in supraoptic nucleus (SON) neurosecretory neurons; identified key modulatory mechanisms, including the role of glia; and determined its functional role in controlling SON neuronal excitability. Besides blocking GABAA-mediated inhibitory postsynaptic currents, the GABAA receptor blockers bicuculline and picrotoxin caused an outward shift in the holding current (I(tonic)), both in oxytocin and vasopressin neurons. Conversely, the high-affinity antagonist gabazine selectively blocked inhibitory postsynaptic currents. Under basal conditions, I(tonic) was independent on the degree of synaptic activity but was strongly modulated by the activity GABA transporters (GATs), mostly the GAT3 isoform, found here to be localized in SON glial cells/processes. Extracellular activation of GABAergic afferents evoked a small gabazine-insensitive, bicuculline-sensitive current, which was enhanced by GAT blockade. These results suggest that I(tonic) may be activated by spillover of GABA during conditions of strong and/or synchronous synaptic activity. Blockade of I(tonic) increased input resistance, induced membrane depolarization and firing activity, and enhanced the input-output function of SON neurons. In summary, our results indicate that GABAA receptors, possibly of different molecular configuration and subcellular distribution, mediate synaptic and tonic inhibition in SON neurons. The latter inhibitory modality plays a major role in modulating SON neuronal excitability, and its efficacy is modulated by the activity of glial GATs.

摘要

除了介导传统的量子突触传递(也称为相位抑制)外,最近研究表明γ-氨基丁酸A(GABAA)受体还参与一种较慢的、持续性抑制形式(紧张性抑制)。我们使用膜片钳电生理学和免疫组织化学方法,研究了GABAA受体介导的紧张性抑制是否存在于视上核(SON)神经分泌神经元中;确定了关键的调节机制,包括神经胶质细胞的作用;并确定了其在控制SON神经元兴奋性中的功能作用。除了阻断GABAA介导的抑制性突触后电流外,GABAA受体阻断剂荷包牡丹碱和印防己毒素在催产素神经元和加压素神经元中均引起了钳制电流(I(tonic))向外偏移。相反,高亲和力拮抗剂gabazine选择性阻断抑制性突触后电流。在基础条件下,I(tonic)与突触活动程度无关,但受到GABA转运体(GATs)活动的强烈调节,这里发现主要是GAT3亚型,定位于SON神经胶质细胞/突起中。GABA能传入神经的细胞外激活诱发了一种小的gabazine不敏感、荷包牡丹碱敏感电流,该电流通过GAT阻断而增强。这些结果表明,I(tonic)可能在强烈和/或同步突触活动条件下由GABA溢出激活。阻断I(tonic)增加了输入电阻,诱导膜去极化和放电活动,并增强了SON神经元的输入-输出功能。总之,我们的结果表明,GABAA受体,可能具有不同的分子构型和亚细胞分布,介导SON神经元中的突触抑制和紧张性抑制。后一种抑制方式在调节SON神经元兴奋性中起主要作用,其效能受神经胶质GATs活动的调节。

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