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神经甾体对 GABA 能抑制的代谢型而非变构作用取决于 GABA 受体的磷酸化。

Metabotropic, but not allosteric, effects of neurosteroids on GABAergic inhibition depend on the phosphorylation of GABA receptors.

机构信息

Department of Neuroscience, Tufts University School of Medicine, Boston, Massachusetts 02111.

Sage Therapeutics, Cambridge, Massachusetts 02142.

出版信息

J Biol Chem. 2019 Aug 9;294(32):12220-12230. doi: 10.1074/jbc.RA119.008875. Epub 2019 Jun 25.

Abstract

Neuroactive steroids (NASs) are synthesized within the brain and exert profound effects on behavior. These effects are primarily believed to arise from the activities of NASs as positive allosteric modulators (PAMs) of the GABA-type A receptor (GABAR). NASs also activate a family of G protein-coupled receptors known as membrane progesterone receptors (mPRs). Here, using surface-biotinylation assays and electrophysiology techniques, we examined mPRs' role in mediating the effects of NAS on the efficacy of GABAergic inhibition. Selective mPR activation enhanced phosphorylation of Ser-408 and Ser-409 (Ser-408/9) within the GABAR β3 subunit, which depended on the activity of cAMP-dependent protein kinase A (PKA) and protein kinase C (PKC). mPR activation did not directly modify GABAR activity and had no acute effects on phasic or tonic inhibition. Instead, mPR activation induced a sustained elevation in tonic current, which was blocked by PKA and PKC inhibition. Substitution of Ser-408/9 to alanine residues also prevented the effects of mPR activation on tonic current. Furthermore, this substitution abolished the effects of sustained NAS exposure on tonic inhibition. Interestingly, the allosteric effects of NAS on GABAergic inhibition were independent of Ser-408/9 in the β3 subunit. Additionally, although allosteric effects of NAS on GABAergic inhibition were sensitive to a recently developed "NAS antagonist," the sustained effects of NAS on tonic inhibition were not. We conclude that metabotropic effects of NAS on GABAergic inhibition are mediated by mPR-dependent modulation of GABAR phosphorylation. We propose that this mechanism may contribute to the varying behavioral effects of NAS.

摘要

神经活性甾体(NASs)在大脑内合成,并对行为产生深远影响。这些影响主要归因于 NASs 作为 GABA 型 A 受体(GABAR)的正变构调节剂(PAMs)的活性。NASs 还激活了一类称为膜孕激素受体(mPRs)的 G 蛋白偶联受体。在这里,我们使用表面生物素化测定和电生理学技术,研究了 mPR 在介导 NAS 对 GABA 能抑制效力的影响中的作用。选择性 mPR 激活增强了 GABARβ3 亚基内丝氨酸 408 和丝氨酸 409(Ser-408/9)的磷酸化,这依赖于环腺苷酸依赖性蛋白激酶 A(PKA)和蛋白激酶 C(PKC)的活性。mPR 激活不会直接改变 GABAR 活性,也不会对相性或紧张性抑制产生急性影响。相反,mPR 激活诱导紧张性电流持续升高,PKA 和 PKC 抑制可阻断该电流升高。Ser-408/9 取代为丙氨酸残基也阻止了 mPR 激活对紧张性电流的影响。此外,这种取代消除了持续 NAS 暴露对紧张性抑制的影响。有趣的是,NAS 对 GABA 能抑制的变构效应与β3 亚基中的 Ser-408/9 无关。此外,尽管 NAS 对 GABA 能抑制的变构效应对最近开发的“NAS 拮抗剂”敏感,但 NAS 对紧张性抑制的持续效应却不敏感。我们得出结论,NAS 对 GABA 能抑制的代谢型效应是通过 mPR 依赖性调节 GABAR 磷酸化介导的。我们提出,这种机制可能有助于 NAS 产生不同的行为效应。

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