首页> 美国卫生研究院文献>The Journal of Pharmacology and Experimental Therapeutics >3β-Methyl-Neurosteroid Analogs Are Preferential Positive Allosteric Modulators and Direct Activators of Extrasynaptic δ-Subunit γ-Aminobutyric Acid Type A Receptors in the Hippocampus Dentate Gyrus Subfield
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3β-Methyl-Neurosteroid Analogs Are Preferential Positive Allosteric Modulators and Direct Activators of Extrasynaptic δ-Subunit γ-Aminobutyric Acid Type A Receptors in the Hippocampus Dentate Gyrus Subfield

机译:3β-甲基-神经甾类类似物是海马齿状回亚基中突触外δ-亚基γ-氨基丁酸A型受体的优先正构构调节剂和直接激活剂。

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摘要

Neurosteroids are powerful modulators of γ-aminobutyric acid (GABA)-A receptors. Ganaxolone (3α-hydroxy-3β-methyl-5α-pregnan-20-one, GX) and synthetic analogs of the neurosteroid allopregnanolone (AP) are designed to treat epilepsy and related conditions. However, their precise mechanism of action in native neurons remains unclear. Here, we sought to determine the mode of action of GX and its analogs at GABA-A receptors in native hippocampal neurons by analyzing extrasynaptic receptor-mediated tonic currents and synaptic receptor-mediated phasic currents. Concentration-response profiles of GX were determined in two cell types: δ-containing dentate gyrus granule cells (DGGCs) and γ2-containing CA1 pyramidal cells (CA1PCs). GX produced significantly greater potentiation of the GABA-A receptor-activated chloride currents in DGGCs (500%) than CA1PCs (200%). In the absence of GABA, GX evoked 2-fold greater inward currents in DGGCs than CA1PCs, which were 2-fold greater than AP within DGGCs. In hippocampus slices, GX potentiated and directly activated tonic currents in DGGCs. These responses were significantly diminished in DGGCs from δ-subunit knockout (δKO) mice, confirming GX’s selectivity for δGABA-A receptors. Like AP, GX potentiation of tonic currents was prevented by protein kinase C inhibition. Furthermore, GX’s protection against hippocampus-kindled seizures was significantly diminished in δKO mice. GX analogs exhibited greater potency and efficacy than GX on δGABA-A receptor-mediated tonic inhibition. In summary, these results provide strong evidence that GX and its analogs are preferential allosteric modulators and direct activators of extrasynaptic δGABA-A receptors regulating network inhibition and seizures in the dentate gyrus. Therefore, these findings provide a mechanistic rationale for the clinical use of synthetic neurosteroids in epilepsy and seizure disorders.
机译:神经类固醇是γ-氨基丁酸(GABA)-A受体的强大调节剂。 Ganaxolone(3α-羟基-3β-甲基-5α-pregnan-20-one,GX)和神经甾体Allopregnanolone(AP)的合成类似物被设计用于治疗癫痫和相关疾病。然而,它们在天然神经元中的确切作用机制仍不清楚。在这里,我们试图通过分析突触外受体介导的强直电流和突触受体介导的相电流来确定GX及其类似物对天然海马神经元GABA-A受体的作用方式。在两种细胞类型中确定了GX的浓度-响应曲线:含δ的齿状回颗粒细胞(DGGC)和含γ2的CA1锥体细胞(CA1PC)。 GX在DGGC(500%)中产生的GABA-A受体激活的氯离子电流的增强作用明显大于CA1PC(200%)。在没有GABA的情况下,GX在DGGC中引起的内向电流比CA1PC大2倍,而CA1PC则比CA1PC大2倍。在海马切片中,GX增强并直接激活DGGC中的滋补电流。这些反应在δ-亚基敲除(δKO)小鼠的DGGC中显着降低,证实了GX对δGABA-A受体的选择性。像AP一样,通过抑制蛋白激酶C来阻止强直性电流的GX增强。此外,δKO小鼠的GX对海马样癫痫发作的保护作用明显减弱。 GX类似物在δGABA-A受体介导的强直性抑制方面显示出比GX更高的效价和功效。总之,这些结果提供了有力的证据,表明GX及其类似物是优先的变构调节剂和突触后δGABA-A受体的直接激活剂,可调节齿状回中的网络抑制和癫痫发作。因此,这些发现为癫痫和癫痫发作中合成神经甾体的临床使用提供了机械原理。

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