Functional Synaptology Laboratory, Brain Research Institute, Research Center of Neurology, Moscow 125367, Russia.
Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Prague 166 10, Czech Republic.
ACS Chem Neurosci. 2023 Sep 6;14(17):3132-3142. doi: 10.1021/acschemneuro.3c00287. Epub 2023 Aug 16.
The mechanism of the negative impact of corticosteroids on the induction and progress of mental illness remains unclear. In this work, we studied the effects of corticosteroids on the activity of neuronal glycine receptors (GlyR) and GABA-A receptors (GABAR) by measuring the chloride current induced by the application of GABA (2 or 5 μM) to isolated cerebellar Purkinje cells () and by the application of glycine (100 μM) to pyramidal neurons of the rat hippocampus (). It was found that corticosterone, 5α-dihydrodeoxycorticosterone, allotetrahydrocorticosterone, cortisol, and 17α,21-dihydroxypregnenolone were able to accelerate the desensitization of the at physiological concentrations (IC values varying from 0.39 to 0.72 μM). Next, cortisone, 11-deoxycortisol, 11-deoxycorticosterone, 5β-dihydrodeoxycorticosterone, and tetrahydrocorticosterone accelerated the desensitization of with IC values varying from 10.3 to 15.2 μM. Allotetrahydrocorticosterone and tetrahydrocorticosterone potentiated the albeit with high EC values (18-23 μM). The rest of the steroids had no effect on in the range of concentrations of 1-100 μM. Finally, our study has suggested a structural relationship of the 3β-hydroxyl group/3-oxo group with the selective modulatory activity on GlyRs in contrast to the 3α-hydroxyl group that is pivotal for GABARs. In summary, our results suggest that increased GlyR desensitization by corticosteroids may contribute to brain dysfunction under chronic stress and identify corticosteroids for further development as selective modulators of GlyRs.
皮质甾类对诱发和进展精神疾病的负面影响的机制仍不清楚。在这项工作中,我们通过测量应用 GABA(2 或 5 μM)对分离的小脑浦肯野细胞()和应用甘氨酸(100 μM)对大鼠海马锥体神经元()引起的氯离子电流,研究了皮质甾类对神经元甘氨酸受体(GlyR)和 GABA-A 受体(GABAR)活性的影响。结果发现,皮质酮、5α-二氢去氧皮质酮、全异戊四氢皮质酮、皮质醇和 17α,21-二羟孕烯酮能够在生理浓度下加速(IC 值从 0.39 到 0.72 μM 不等)的脱敏作用。接下来,可的松、11-去氧皮质醇、11-去氧皮质酮、5β-二氢去氧皮质酮和四氢皮质酮以 10.3 到 15.2 μM 的 IC 值加速了(IC 值从 10.3 到 15.2 μM)的脱敏作用。全异戊四氢皮质酮和四氢皮质酮虽然 EC 值较高(18-23 μM),但仍增强了 。其余的甾体类化合物在 1-100 μM 的浓度范围内对 没有影响。最后,我们的研究表明,与对 GABARs 至关重要的 3α-羟基基团相比,3β-羟基基团/3-酮基团与 GlyRs 的选择性调制活性之间存在结构关系。总之,我们的研究结果表明,皮质甾类物增加 GlyR 的脱敏作用可能导致慢性应激下的大脑功能障碍,并确定皮质甾类物作为 GlyRs 的选择性调节剂进一步开发。