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首页> 外文期刊>Journal of Medicinal Chemistry >Drug Design, in Vitro Pharmacology, and Structure-Activity Relationships of 3-Acylamino-2-aminopropionic Acid Derivatives, a Novel Class of Partial Agonists at the Glycine Site on the N-Methyl-D-aspartate (NMDA) Receptor Complex
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Drug Design, in Vitro Pharmacology, and Structure-Activity Relationships of 3-Acylamino-2-aminopropionic Acid Derivatives, a Novel Class of Partial Agonists at the Glycine Site on the N-Methyl-D-aspartate (NMDA) Receptor Complex

机译:3-乙酰氨基-2-氨基丙酸衍生物的药物设计,体外药理学和结构-活性关系,这是一类新型的部分激动剂,位于N-甲基-D-天冬氨酸(NMDA)受体复合物上的甘氨酸位点。

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摘要

Retaining agonistic activity at the glycine coagonist site of the NMDA receptor in molecules derived from glycine or D-serine has proven to be difficult because in the vicinity of the alpha-amino acid group little substitution is tolerated. We have solved this problem by replacing the hydroxy group of D-serine with an amido group, thus keeping the hydrogen donor function and allowing For further substitution and exploration of the adjacent space. Heterocyclic substitutions resulted in a series of 3-acylamino-2-aminopropionic acid derivatives, with high affinities in a binding assay for the glycine site. In a functional assay assessing the activation of the glycine site, these compounds displayed a wide range of intrinsic efficacies, from antagonism to a high degree of partial agonism. Structure-activity relationships reveal that lipophilic substituents, presumably filling an additional hydrophobic pocket, are accepted by the glycine site, provided that they are separated from the alpha-amino acid group by a short linker.
机译:已经证明在衍生自甘氨酸或D-丝氨酸的分子中在NMDA受体的甘氨酸激动剂位点上保持激动活性是困难的,因为在α-氨基酸基团附近几乎不容许取代。我们通过用酰胺基取代D-丝氨酸的羟基解决了这个问题,从而保持了氢供体的功能,并允许进一步取代和探索相邻的空间。杂环取代产生了一系列3-酰基氨基-2-氨基丙酸衍生物,在对甘氨酸位点的结合测定中具有高亲和力。在评估甘氨酸位点活化的功能测定中,这些化合物显示出从拮抗作用到高度部分激动作用的广泛内在功效。结构-活性关系表明,假定填充一个额外的疏水口袋的亲脂取代基被甘氨酸位点接受,条件是它们通过短连接子与α-氨基酸基团隔开。

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