Department of Psychiatry, Washington University in St. Louis, St. Louis, MO 63110
Department of Psychiatry, Washington University in St. Louis, St. Louis, MO 63110.
eNeuro. 2023 Mar 13;10(3). doi: 10.1523/ENEURO.0392-22.2023. Print 2023 Mar.
Allopregnanolone (AlloP) is a neurosteroid that potentiates ionotropic GABAergic (GABA) inhibition and is approved for treating postpartum depression in women. Although the antidepressant mechanism of AlloP is largely unknown, it could involve selective action at GABA receptors containing the δ subunit. Despite previous evidence for selective effects of AlloP on α4/δ-containing receptors of hippocampal dentate granule cells (DGCs), other recent results failed to demonstrate selectivity at these receptors (Lu et al., 2020). In contrast to DGCs, hippocampal fast-spiking parvalbumin (PV) interneurons express an unusual variant partnership of δ subunits with α1 subunits. Here, we hypothesized that native α1/δ receptors in hippocampal fast-spiking interneurons may provide a preferred substrate for AlloP. Contrary to the hypothesis, electrophysiology from genetically tagged PV interneurons in hippocampal slices from male mice showed that 100 nm AlloP promoted phasic inhibition by increasing the sIPSC decay, but tonic inhibition was not detectably altered. Co-application of AlloP with 5 μm GABA did augment tonic current, which was not primarily through δ-containing receptors. Furthermore, AlloP decreased the membrane resistance and the number of action potentials of DGCs, but the impact on PV interneurons was weaker than on DGCs. Thus, our results indicate that hippocampal PV interneurons possess low sensitivity to AlloP and suggest they are unlikely contributors to mood-altering effects of neurosteroids through GABA effects.
别孕烯醇酮(AlloP)是一种神经甾体,可增强离子型 GABA 能(GABA)抑制作用,已被批准用于治疗女性产后抑郁症。尽管 AlloP 的抗抑郁作用机制尚不清楚,但它可能涉及对含有 δ 亚基的 GABA 受体的选择性作用。尽管先前有证据表明 AlloP 对海马齿状回颗粒细胞(DGC)中含有 α4/δ 的受体具有选择性作用,但最近的其他结果未能证明这些受体具有选择性(Lu 等人,2020 年)。与 DGC 不同,海马快棘神经元表达与 α1 亚基组成的不寻常的 δ 亚基变体伙伴关系。在这里,我们假设海马快棘神经元中的天然 α1/δ 受体可能为 AlloP 提供首选底物。与假设相反,来自雄性小鼠海马切片中基因标记的 PV 中间神经元的电生理学研究表明,100nm AlloP 通过增加 sIPSC 衰减来促进相位抑制,但强直抑制未明显改变。AlloP 与 5μm GABA 共同应用会增强强直电流,这主要不是通过含 δ 的受体。此外,AlloP 降低了 DGC 的膜电阻和动作电位的数量,但对 PV 中间神经元的影响弱于 DGC。因此,我们的结果表明,海马 PV 中间神经元对 AlloP 的敏感性较低,并表明它们不太可能通过 GABA 作用对神经甾体的情绪改变作用做出贡献。