首页> 外文期刊>The Journal of Physiology >Contrasting actions of a convulsant barbiturate and its anticonvulsant enantiomer on the alpha(1)beta(3)gamma(2L) GABA(A) receptor account for their in vivo effects
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Contrasting actions of a convulsant barbiturate and its anticonvulsant enantiomer on the alpha(1)beta(3)gamma(2L) GABA(A) receptor account for their in vivo effects

机译:惊厥性巴比妥酸盐及其抗惊厥对映体对α(1)β(3)γ(2L)GABA(A)受体的反作用解释了它们的体内作用

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摘要

Most barbiturates are anaesthetics but a few unexpectedly are convulsants. We recently located the anaesthetic sites on GABA(A) receptors (GABA(A)Rs) by photolabelling with an anaesthetic barbiturate. To apply the same strategy to locate the convulsant sites requires the creation and mechanistic characterization of a suitable agent. We synthesized enantiomers of a novel, photoactivable barbiturate, 1-methyl-5-propyly-5-(m-trifluoromethyldiazirinyl) phenyl barbituric acid (mTFD-MPPB). In mice, S-mTFD-MPPB acted as a convulsant, whereas R-mTFD-MPPB acted as an anticonvulsant. Using patch clamp electrophysiology and fast solution exchange on recombinant human (132L) GABA(A)Rs expressed in HEK cells, we found that S-mTFD-MPPB inhibited GABA-induced currents, whereas R-mTFD-MPPB enhanced them. S-mTFD-MPPB caused inhibition by binding to either of two inhibitory sites on open channels with bimolecular kinetics. It also inhibited closed, resting state receptors at similar concentrations, decreasing the channel opening rate and shifting the GABA concentration-response curve to the right. R-mTFD-MPPB, like most anaesthetics, enhanced receptor gating by rapidly binding to allosteric sites on open channels, initiating a rate-limiting conformation change to stabilized open channel states. These states had slower closing rates, thus shifting the GABA concentration-response curve to the left. Under conditions when most GABA(A)Rs were open, an inhibitory action of R-mTFD-MPPB was revealed that had a similar IC50 to that of S-mTFD-MPPB. Thus, the inhibitory sites are not enantioselective, and the convulsant action of S-mTFD-MPPB results from its negligible affinity for the enhancing, anaesthetic sites. Interactions with these two classes of barbiturate binding sites on GABA(A)Rs underlie the enantiomers' different pharmacological activities in mice.
机译:大多数巴比妥类药物是麻醉药,但少数出乎意料的是惊厥药。我们最近通过用麻醉性巴比妥酸盐进行光标记来定位GABA(A)受体(GABA(A)Rs)上的麻醉位点。为了应用相同的策略来定位惊厥部位,需要创建合适的药剂并对其进行机械表征。我们合成了一种新型的,可光活化的巴比妥酸酯,1-甲基-5-丙基y-5-(间三氟甲基二叠氮基)苯基巴比妥酸(mTFD-MPPB)的对映体。在小鼠中,S-mTFD-MPPB充当惊厥剂,而R-mTFD-MPPB充当抗惊厥剂。使用膜片钳电生理学和快速的溶液交换在HEK细胞中表达的重组人(132L)GABA(A)Rs,我们发现S-mTFD-MPPB抑制了GABA诱导的电流,而R-mTFD-MPPB增强了它们。 S-mTFD-MPPB通过与具有双分子动力学的开放通道上的两个抑制位点结合而引起抑制作用。它还以相似的浓度抑制了封闭的,静止状态的受体,降低了通道的开放速率,并使GABA浓度-响应曲线向右移动。像大多数麻醉剂一样,R-mTFD-MPPB通过快速结合到开放通道的变构位点,启动限速构象变化到稳定的开放通道状态,从而增强了受体门控。这些状态的闭合速率较慢,因此GABA浓度-响应曲线向左移动。在大多数GABA(A)Rs开放的条件下,R-mTFD-MPPB的抑制作用显示出与S-mTFD-MPPB相似的IC50。因此,抑制位点不是对映选择性的,并且S-mTFD-MPPB的惊厥作用是由于其对增强的麻醉位点的亲和力可忽略不计。与GABA(A)Rs上这两类巴比妥酸酯结合位点的相互作用是对映体在小鼠中不同药理活性的基础。

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