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RNA Based Antagonist of NMDAReceptors

机译:NMDA基于RNA的拮抗剂受体

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摘要

The N-methyl d-aspartate (NMDA) class of ionotropic glutamate receptors plays important roles in learning and memory as well as in a number of neurological disorders including Huntington’s disease and cerebral ischemia. Here, we describe the isolation and characterization of a 2′ F-modified RNA aptamers directed against GluN2A-containing NMDA receptors. By adding a negative selection step toward the closely related AMPA and kainate receptors, the RNA aptamers specifically recognize NMDA receptors with dissociation constants in the nanomolar range. Electrophysiological characterization of these aptamers using rapid perfusion in outside-out patches reveals that they selectively inhibit the GluN2A containing subtype of NMDA receptors with little effect on the AMPA and kainate receptor subtypes. We also demonstrate that this RNA aptamer significantly reduces neurotoxicity in an in vitro model of cerebral ischemia. Given that the RNA based antagonist can be readily modified, it can be used as a tool in targeted drug delivery or for imaging purposes in addition to having the potential use as a therapeutic intervention in disorders involving glutamatereceptors.
机译:离子型谷氨酸受体的N-甲基d-天冬氨酸(NMDA)类在学习和记忆以及许多神经系统疾病(包括亨廷顿氏病和脑缺血)中起重要作用。在这里,我们描述了针对含GluN2A的NMDA受体的2'F-修饰的RNA适体的分离和表征。通过增加对紧密相关的AMPA和海藻酸酯受体的负选择步骤,RNA适体可特异性识别具有纳摩尔摩尔解离常数的NMDA受体。使用从外而外的贴片中快速灌注对这些适体进行电生理学表征表明,它们可以选择性抑制含有GluN2A的NMDA受体亚型,而对AMPA和红藻氨酸受体亚型的影响很小。我们还证明,这种RNA适体在脑缺血的体外模型中显着降低了神经毒性。鉴于基于RNA的拮抗剂可以轻松进行修饰,除了可以潜在地用于涉及谷氨酸的疾病的治疗干预之外,还可以用作靶向药物输送或成像目的的工具。受体。

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