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鉴定谷氨酸转运体 EAAT2 的新型别构调节剂。

Identification of Novel Allosteric Modulators of Glutamate Transporter EAAT2.

机构信息

Department of Microbiology and Immunology, Centers for Molecular Parasitology, Virology and Translational Neuroscience, Institute for Molecular Medicine , Drexel University College of Medicine , Philadelphia , Pennsylvania 19129 , United States.

Department of Pharmacology and Physiology , Drexel University College of Medicine , Philadelphia , Pennsylvania 19102 , United States.

出版信息

ACS Chem Neurosci. 2018 Mar 21;9(3):522-534. doi: 10.1021/acschemneuro.7b00308. Epub 2017 Nov 30.

Abstract

Dysfunction of excitatory amino acid transporters (EAATs) has been implicated in the pathogenesis of various neurological disorders, such as stroke, brain trauma, epilepsy, and neurodegenerative diseases, among others. EAAT2 is the main subtype responsible for glutamate clearance in the brain, having a key role in regulating transmission and preventing excitotoxicity. Therefore, compounds that increase the expression or activity of EAAT2 have therapeutic potential for neuroprotection. Previous studies identified molecular determinants for EAAT2 transport stimulation in a structural domain that lies at the interface of the rigid trimerization domain and the central substrate binding transport domain. In this work, a hybrid structure based approach was applied, based on this molecular domain, to create a high-resolution pharmacophore. Subsequently, virtual screening of a library of small molecules was performed, identifying 10 hit molecules that interact at the proposed domain. Among these, three compounds were determined to be activators, four were inhibitors, and three had no effect on EAAT2-mediated transport in vitro. Further characterization of the two best ranking EAAT2 activators for efficacy, potency, and selectivity for glutamate over monoamine transporters subtypes and NMDA receptors and for efficacy in cultured astrocytes is demonstrated. Mutagenesis studies suggest that the EAAT2 activators interact with residues forming the interface between the trimerization and transport domains. These compounds enhance the glutamate translocation rate, with no effect on substrate interaction, suggesting an allosteric mechanism. The identification of these novel positive allosteric modulators of EAAT2 offers an innovative approach for the development of therapies based on glutamate transport enhancement.

摘要

兴奋性氨基酸转运体(EAATs)的功能障碍与多种神经疾病的发病机制有关,如中风、脑外伤、癫痫和神经退行性疾病等。EAAT2 是大脑中负责清除谷氨酸的主要亚型,在调节递质传递和防止兴奋毒性方面起着关键作用。因此,增加 EAAT2 表达或活性的化合物具有神经保护的治疗潜力。以前的研究在位于刚性三聚体化结构域和中央底物结合转运结构域界面的结构域中确定了 EAAT2 转运刺激的分子决定因素。在这项工作中,应用了基于混合结构的方法,基于该分子结构域创建了一个高分辨率的药效团。随后,对小分子文库进行了虚拟筛选,鉴定出 10 个与所提议的结构域相互作用的命中分子。其中,有 3 种化合物被确定为激活剂,4 种为抑制剂,3 种在体外对 EAAT2 介导的转运没有影响。进一步对两种排名最高的 EAAT2 激活剂进行了功效、效力和对谷氨酸与单胺转运体亚型和 NMDA 受体的选择性以及对培养星形胶质细胞的功效的特征分析。突变研究表明,EAAT2 激活剂与形成三聚体化和转运结构域之间界面的残基相互作用。这些化合物增强了谷氨酸转运速率,而对底物相互作用没有影响,提示存在变构机制。这些新型 EAAT2 正变构调节剂的鉴定为基于谷氨酸转运增强的治疗方法的开发提供了一种创新方法。

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