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Cyclopropane derivatives as potential human serine racemase inhibitors: unveiling novel insights into a difficult target

机译:环丙烷衍生物作为潜在的人类丝氨酸外周血酶抑制剂:揭开难以达到困难目标的新洞察力

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摘要

D-Serine is the co-agonist of NMDA receptors and binds to the so-called glycine site. D-Serine is synthesized by human serine racemase (SR). Over activation of NMDA receptors is involved in many neurodegenerative diseases and, therefore, the inhibition of SR might represent a novel strategy for the treatment of these pathologies. SR is a very difficult target, with only few compounds so far identified exhibiting weak inhibitory activity. This study was aimed at the identification of novel SR inhibitor by mimicking malonic acid, the best-known SR inhibitor, with a cyclopropane scaffold. We developed, synthesized, and tested a series of cyclopropane dicarboxylic acid derivatives, complementing the synthetic effort with molecular docking. We identified few compounds that bind SR in high micromolar range with a lack of significant correlation between experimental and predicted binding affinities. The thorough analysis of the results can be exploited for the development of more potent SR inhibitors.
机译:D-丝氨酸是NMDA受体的共同激动剂,与所谓的甘氨酸位点结合。D-丝氨酸是由人丝氨酸消旋酶(SR)合成的。NMDA受体的过度激活与许多神经退行性疾病有关,因此,抑制SR可能是治疗这些疾病的一种新策略。SR是一个非常困难的靶点,迄今为止只有少数化合物表现出微弱的抑制活性。本研究旨在通过环丙烷支架模拟最著名的SR抑制剂丙二酸来鉴定新型SR抑制剂。我们开发、合成并测试了一系列环丙烷二羧酸衍生物,通过分子对接补充了合成工作。我们发现在高微摩尔范围内结合SR的化合物很少,实验和预测的结合亲和力之间缺乏显著相关性。对结果的深入分析可用于开发更有效的SR抑制剂。

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