Boddum Kim, Frølund Bente, Kristiansen Uffe
Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen, 2100, Copenhagen, Denmark.
Neurochem Res. 2014 Nov;39(11):2078-84. doi: 10.1007/s11064-014-1397-9. Epub 2014 Aug 8.
GABAA receptors mediate two different types of inhibitory currents: phasic inhibitory currents when rapid and brief presynaptic GABA release activates postsynaptic GABAA receptors and tonic inhibitory currents generated by low extrasynaptic GABA levels, persistently activating extrasynaptic GABAA receptors. The two inhibitory current types are mediated by different subpopulations of GABAA receptors with diverse pharmacological profiles. Selective antagonism of tonic currents is of special interest as excessive tonic inhibition post-stroke has severe pathological consequences. Here we demonstrate that phasic and tonic GABAA receptor currents can be selectively inhibited by the antagonists SR 95531 and the 4-PIOL derivative, 4-(3,3-diphenylpropyl)-5-(4-piperidyl)-3-isoxazolol hydrobromide (DPP-4-PIOL), respectively. In dentate gyrus granule cells, SR 95531 was found approximately 4 times as potent inhibiting phasic currents compared to tonic currents (IC50 values: 101 vs. 427 nM). Conversely, DPP-4-PIOL was estimated to be more than 20 times as potent inhibiting tonic current compared to phasic current (IC50 values: 0.87 vs. 21.3 nM). Consequently, we were able to impose a pronounced reduction in tonic GABA mediated current (>70 %) by concentrations of DPP-4-PIOL, at which no significant effect on the phasic current was seen. Our findings demonstrate that selective inhibition of GABA mediated tonic current is possible, when targeting a subpopulation of GABAA receptors located extrasynaptically using the antagonist, DPP-4-PIOL.
γ-氨基丁酸A型(GABAA)受体介导两种不同类型的抑制性电流:当快速且短暂的突触前γ-氨基丁酸(GABA)释放激活突触后GABAA受体时产生的相位性抑制电流,以及由低突触外GABA水平产生的持续性抑制电流,其持续激活突触外GABAA受体。这两种抑制性电流类型由具有不同药理学特性的GABAA受体不同亚群介导。由于中风后过度的持续性抑制具有严重的病理后果,因此对持续性电流的选择性拮抗特别受关注。在这里,我们证明相位性和持续性GABAA受体电流可分别被拮抗剂SR 95531和4-哌啶异恶唑醇衍生物4-(3,3-二苯基丙基)-5-(4-哌啶基)-3-异恶唑醇氢溴酸盐(DPP-4-PIOL)选择性抑制。在齿状回颗粒细胞中,发现SR 95531抑制相位性电流的效力约为抑制持续性电流的4倍(半数抑制浓度[IC50]值:101对427 nM)。相反,据估计DPP-4-PIOL抑制持续性电流的效力比抑制相位性电流强20倍以上(IC50值:0.87对21.3 nM)。因此,我们能够通过DPP-4-PIOL浓度使持续性GABA介导的电流显著降低(>70%),而在此浓度下对相位性电流未见明显影响。我们的研究结果表明,当使用拮抗剂DPP-4-PIOL靶向突触外定位的GABAA受体亚群时,选择性抑制GABA介导的持续性电流是可能的。