首页> 美国卫生研究院文献>Molecular Pharmacology >Bidirectional Effect of Pregnenolone Sulfate on GluN1/GluN2A N-Methyl-d-Aspartate Receptor Gating Depending on Extracellular Calcium and Intracellular Milieu
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Bidirectional Effect of Pregnenolone Sulfate on GluN1/GluN2A N-Methyl-d-Aspartate Receptor Gating Depending on Extracellular Calcium and Intracellular Milieu

机译:硫酸孕烯醇酮对GluN1 / GluN2A N-甲基-d-天冬氨酸受体门控的双向作用取决于细胞外钙和细胞内环境

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摘要

Pregnenolone sulfate (PS), one of the most commonly occurring neurosteroids in the central nervous system, influences the function of several receptors. PS modulates N-methyl-d-aspartate receptors (NMDARs) and has been shown to have both positive and negative modulatory effects on NMDAR currents generally in a subtype-selective manner. We assessed the gating mechanism of PS modulation of GluN1/GluN2A receptors transiently expressed in human embryonic kidney 293 cells using whole-cell and single-channel electrophysiology. Only a modest effect on the whole-cell responses was observed by PS in dialyzed (nonperforated) whole-cell recordings. Interestingly, in perforated conditions, PS was found to increase the whole-cell currents in the absence of nominal extracellular Ca2+, whereas PS produced an inhibition of the current responses in the presence of 0.5 mM extracellular Ca2+. The Ca2+-binding DRPEER motif and GluN1 exon-5 were found to be critical for the Ca2+-dependent bidirectional effect of PS. Single-channel cell-attached analysis demonstrated that PS primarily affected the mean open time to produce its effects: positive modulation mediated by an increase in duration of open time constants, and negative modulation mediated by a reduction in the time spent in a long-lived open state of the receptor. Further kinetic modeling of the single-channel data suggested that the positive and negative modulatory effects are mediated by different gating steps which may represent GluN2 and GluN1 subunit-selective conformational changes, respectively. Our studies provide a unique mechanism of modulation of NMDARs by an endogenous neurosteroid, which has implications for identifying state-dependent molecules.
机译:硫酸孕烯醇酮(PS)是中枢神经系统中最常见的神经甾体之一,会影响多种受体的功能。 PS调节N-甲基-d-天冬氨酸受体(NMDARs),并且已经显示出通常以亚型选择性方式对NMDAR电流具有正调节作用和负调节作用。我们使用全细胞和单通道电生理学评估了人类胚胎肾293细胞中瞬时表达的GluN1 / GluN2A受体的PS调节的门控机制。 PS在渗析(未穿孔)的全细胞记录中仅观察到对全细胞响应的适度影响。有趣的是,在有穿孔的条件下,发现PS在不存在标称细胞外Ca 2 + 的情况下会增加全细胞电流,而PS在存在0.5 mM细胞外Ca的情况下会抑制电流响应 2 + 。 Ca 2 + 结合DRPEER基序和GluN1外显子5被发现对PS的Ca 2 + 依赖性双向作用至关重要。单通道细胞附着分析表明,PS主要影响平均打开时间以产生其效果:打开时间常数持续时间增加所介导的正调制,以及长寿命时间的减少所介导的负调制受体的开放状态。单通道数据的进一步动力学建模表明,正调节作用和负调节作用是通过不同的门控步骤介导的,这些门控步骤分别代表GluN2和GluN1亚基选择性构象变化。我们的研究提供了一种内源性神经固醇调节NMDAR的独特机制,这对于鉴定状态依赖性分子具有重要意义。

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