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作用于 NMDA 受体的变构正调节剂的作用机制。

Mechanisms of Action Underlying Conductance-Modifying Positive Allosteric Modulators of the NMDA Receptor.

机构信息

Departments of Pharmacology and Chemical Biology, Emory School of Medicine (E.Z.U., R.E.P., S.F.T.) and Chemistry (S.P., R.G.F., N.S.A., L.J., D.C.L.), Emory University, Atlanta, Georgia.

Departments of Pharmacology and Chemical Biology, Emory School of Medicine (E.Z.U., R.E.P., S.F.T.) and Chemistry (S.P., R.G.F., N.S.A., L.J., D.C.L.), Emory University, Atlanta, Georgia

出版信息

Mol Pharmacol. 2024 Nov 18;106(6):334-353. doi: 10.1124/molpharm.124.001019.

Abstract

N-methyl-D-aspartate receptors (NMDARs) are ionotropic glutamate receptors that mediate a slow, Ca-permeable component of excitatory neurotransmission. Modulation of NMDAR function has the potential for disease modification as NMDAR dysfunction has been implicated in neurodevelopment, neuropsychiatric, neurologic, and neurodegenerative disorders. We recently described the thieno[2,3-day]pyrimidin-4-one (EU1622) class of positive allosteric modulators, including several potent and efficacious analogs. Here we have used electrophysiological recordings from oocytes, human embryonic kidney cells, and cultured cerebellar and cortical neurons to determine the mechanisms of action of a representative member of this class of modulator. EU1622-240 enhances current response to saturating agonist (doubling response amplitude at 0.2-0.5 M), slows the deactivation time course following rapid removal of glutamate, increases open probability, enhances coagonist potency, and reduces single-channel conductance. We also show that EU1622-240 facilitates NMDAR activation when only glutamate or glycine is bound. EU1622-240-bound NMDARs channels activated by a single agonist (glutamate or glycine) open to a unique conductance level with different pore properties and Mg sensitivity, in contrast to channels arising from activation of NMDARs with both coagonists bound. These data demonstrate that previously hypothesized distinct gating steps can be controlled by glutamate and glycine binding and shows that the 1622-series modulators enable glutamate- or glycine-bound NMDARs to generate open conformations with different pore properties. The properties of this class of allosteric modulators present intriguing therapeutic opportunities for the modulation of circuit function. SIGNIFICANCE STATEMENT: NMDA receptors are expressed throughout the central nervous system and are permeable to calcium. EU1622-240 increases open probability and agonist potency while reducing single-channel conductance and prolonging the deactivation time course. EU1622-240 allows NMDA receptor activation by the binding of one coagonist (glycine or glutamate), which produces channels with distinct properties. Evaluation of this modulator provides insight into gating mechanisms and may lead to the development of new therapeutic strategies.

摘要

N-甲基-D-天冬氨酸受体(NMDARs)是离子型谷氨酸受体,介导兴奋性神经递质传递的缓慢、Ca 通透性成分。NMDAR 功能的调节有可能改变疾病,因为 NMDAR 功能障碍与神经发育、神经精神、神经和神经退行性疾病有关。我们最近描述了噻吩并[2,3-d]嘧啶-4-酮(EU1622)类正变构调节剂,包括几种有效且有效的类似物。在这里,我们使用卵母细胞、人胚肾细胞以及培养的小脑和皮质神经元的电生理记录来确定该类调节剂的代表成员的作用机制。EU1622-240 增强了对饱和激动剂的电流反应(在 0.2-0.5 M 时将反应幅度增加一倍),减缓了谷氨酸快速去除后的失活时程,增加了开放概率,增强了共激动剂效力,并降低了单通道电导。我们还表明,EU1622-240 促进了当仅结合谷氨酸或甘氨酸时 NMDAR 的激活。EU1622-240 结合的 NMDAR 通道由单一激动剂(谷氨酸或甘氨酸)激活,具有独特的电导水平和不同的孔特性和 Mg 敏感性,与由结合两种共激动剂的 NMDAR 激活产生的通道相反。这些数据表明,以前假设的不同门控步骤可以由谷氨酸和甘氨酸结合控制,并表明 1622 系列调节剂使谷氨酸或甘氨酸结合的 NMDAR 产生具有不同孔特性的开放构象。该类变构调节剂的特性为调节电路功能提供了有趣的治疗机会。意义声明:NMDA 受体在中枢神经系统中广泛表达,对钙具有通透性。EU1622-240 增加开放概率和激动剂效力,同时降低单通道电导并延长失活时程。EU1622-240 允许 NMDA 受体通过结合一种共激动剂(甘氨酸或谷氨酸)激活,从而产生具有独特特性的通道。该调节剂的评估提供了对门控机制的深入了解,并可能导致新的治疗策略的发展。

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