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负变构调节剂 EU1794-4 降低 GluN1/GluN2A-甲基-d-天冬氨酸受体的单通道电导和钙通透性。

The Negative Allosteric Modulator EU1794-4 Reduces Single-Channel Conductance and Ca Permeability of GluN1/GluN2A -Methyl-d-Aspartate Receptors.

机构信息

Department of Pharmacology and Chemical Biology, Emory University School of Medicine, Atlanta, Georgia (R.E.P., Z.Z., T.G.B., J.Z., L.X., M.J.M., H.Y., S.F.T.) and Department of Chemistry, Emory University, Atlanta, Georgia (B.M.K., S.C.P., D.C.L.).

Department of Pharmacology and Chemical Biology, Emory University School of Medicine, Atlanta, Georgia (R.E.P., Z.Z., T.G.B., J.Z., L.X., M.J.M., H.Y., S.F.T.) and Department of Chemistry, Emory University, Atlanta, Georgia (B.M.K., S.C.P., D.C.L.)

出版信息

Mol Pharmacol. 2021 May;99(5):399-411. doi: 10.1124/molpharm.120.000218. Epub 2021 Mar 9.

Abstract

NMDA receptors are ligand-gated ion channels that mediate a slow, Ca-permeable component of excitatory synaptic currents. These receptors are involved in several important brain functions, including learning and memory, and have also been implicated in neuropathological conditions and acute central nervous system injury, which has driven therapeutic interest in their modulation. The EU1794 series of positive and negative allosteric modulators of NMDA receptors has structural determinants of action near the preM1 helix that is involved in channel gating. Here, we describe the effects of the negative allosteric modulator EU1794-4 on GluN1/GluN2A channels studied in excised outside-out patches. Coapplication of EU1794-4 with a maximally effective concentration of glutamate and glycine increases the fraction of time the channel is open by nearly 1.5-fold, yet reduces single-channel conductance by increasing access of the channel to several subconductance levels, which has the net overall effect of reducing the macroscopic current. The lack of voltage-dependence of negative modulation suggests this is unrelated to a channel block mechanism. As seen with other NMDA receptor modulators that reduce channel conductance, EU1794-4 also reduces the Ca permeability relative to monovalent cations of GluN1/GluN2A receptors. We conclude that EU1794-4 is a prototype for a new class of NMDA receptor negative allosteric modulators that reduce both the overall current that flows after receptor activation and the flux of Ca ion relative to monovalent cations. SIGNIFICANCE STATEMENT: NMDA receptors are implicated in many neurological conditions but are challenging to target given their ubiquitous expression. Several newly identified properties of the negative allosteric modulator EU1794-4, including reducing Ca flux through NMDA receptors and attenuating channel conductance, explain why this modulator reduces but does not eliminate NMDA receptor function. A modulator with these properties could have therapeutic advantages for indications in which attenuation of NMDA receptor function is beneficial, such as neurodegenerative disease and acute injury.

摘要

NMDA 受体是配体门控离子通道,介导兴奋性突触电流的缓慢、Ca 通透性成分。这些受体参与了几种重要的大脑功能,包括学习和记忆,也与神经病理学状况和急性中枢神经系统损伤有关,这促使人们对其调节产生了治疗兴趣。NMDA 受体的 EU1794 系列正变构调节剂和负变构调节剂具有与参与通道门控的 preM1 螺旋附近的作用结构决定因素。在这里,我们描述了负变构调节剂 EU1794-4 对在分离的外面向外膜片中研究的 GluN1/GluN2A 通道的影响。EU1794-4 与最大有效浓度的谷氨酸和甘氨酸共同应用,将通道开放的时间分数增加近 1.5 倍,然而通过增加通道进入几个亚电导水平来降低单通道电导,这具有降低宏观电流的总体效果。负调制的无电压依赖性表明这与通道阻断机制无关。与其他降低通道电导的 NMDA 受体调节剂一样,EU1794-4 也降低了 GluN1/GluN2A 受体相对于单价阳离子的 Ca 通透性。我们得出结论,EU1794-4 是一种新型 NMDA 受体负变构调节剂的原型,它降低了受体激活后流动的总电流以及 Ca 离子相对于单价阳离子的通量。意义陈述:NMDA 受体与许多神经学状况有关,但由于其广泛表达,靶向 NMDA 受体具有挑战性。负变构调节剂 EU1794-4 的几个新发现特性,包括降低 NMDA 受体的 Ca 通量和减弱通道电导,解释了为什么这种调节剂会降低但不会消除 NMDA 受体的功能。具有这些特性的调节剂在 NMDA 受体功能减弱有益的适应症中可能具有治疗优势,例如神经退行性疾病和急性损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0f8/8058507/2433624c9a8d/molpharm.120.000218absf1.jpg

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