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FUNCTIONAL ANALYSIS OF A NOVEL POSITIVE ALLOSTERIC MODULATOR OF AMPA RECEPTORS DERIVED FROM A STRUCTURE-BASED DRUG DESIGN STRATEGY

机译:设计的新正向别构调节ampa受体的功能性分析衍生自基于结构的药物设计策略

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摘要

Positive allosteric modulators of α-amino-3-hydroxy-5-methyl-isoxazole-propionic acid (AMPA) receptors facilitate synaptic plasticity and can improve various forms of learning and memory. These modulators show promise as therapeutic agents for the treatment of neurological disorders such as schizophrenia, ADHD, and mental depression. Three classes of positive modulator, the benzamides, the thiadiazides, and the biarylsulfonamides differentially occupy a solvent accessible binding pocket at the interface between the two subunits that form the AMPA receptor ligand-binding pocket. Here, we describe the electrophysiological properties of a new chemotype derived from a structure-based drug design strategy (SBDD), which makes similar receptor interactions compared to previously reported classes of modulator. This pyrazole amide derivative, JAMI1001A, with a promising developability profile, efficaciously modulates AMPA receptor deactivation and desensitization of both flip and flop receptor isoforms.
机译:α-氨基-3-羟基-5-甲基异恶唑 - 异恶唑 - 异恶唑 - 异恶唑(AMPA)受体的正颠振调制剂促进了突触可塑性,可以改善各种形式的学习和记忆。这些调节剂显示出作为治疗神经系统疾病的治疗剂,例如精神分裂症,ADHD和精神抑郁症。三类阳性调节剂,苯甲酰胺,噻二氧化物和双溴酰胺差异地占据在形成AMPA受体配体结合口袋的两个亚基之间的界面处的溶剂可接近的结合口袋。这里,我们描述了衍生自基于结构的药物设计策略(SBDD)的新趋化型的电生理学特性,与先前报道的调节剂的类别相比具有类似的受体相互作用。该吡唑酰胺衍生物,JAMI1001a具有有前途的显影性曲线,有效地调节AMPA受体失活和翻转和翻转受体同种型的脱敏。

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