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构象受限谷氨酸同系物的合成及其药理学特性研究。

Synthesis of conformationally constrained glutamic acid homologues and investigation of their pharmacological profiles.

作者信息

Conti Paola, Pinto Andrea, Tamborini Lucia, Grazioso Giovanni, De Sarro Giovambattista, Bräuner-Osborne Hans, Szabo Geza, Gábor Hársing László, De Micheli Carlo

机构信息

Istituto di Chimica Farmaceutica e Tossicologica Pietro Pratesi, Università degli Studi di Milano, Via Mangiagalli 25, 20133 Milano, Italy.

出版信息

ChemMedChem. 2007 Nov;2(11):1639-47. doi: 10.1002/cmdc.200700118.

DOI:10.1002/cmdc.200700118
PMID:17849399
Abstract

Homologation of the glutamic acid chain together with conformational constraint is a commonly used strategy to achieve selectivity towards different types of glutamate receptors. We investigated the effects of a further increase in the distance between the amino acid moiety and the distal carboxylate group of model compounds (+/-)-1 and (+/-)-2 on their activity/selectivity profiles. We therefore synthesized new derivatives (+/-)-3-(+/-)-6, which are homologues of glutamic acid containing three additional carbon units. Moreover, because the potency of NMDA antagonists can be markedly increased by replacing the distal carboxylate with the bioisosteric phosphonate group, we also prepared the corresponding phosphonate derivatives (+/-)-7-(+/-)-10. All new compounds were submitted to binding assays with iGluRs, and derivatives (+/-)-3-(+/-)-6 were also tested in second messenger assays at representative mGluR subtypes. All the applied structural modifications were detrimental to the interaction with NMDA receptors. Conversely, structural variation of the nonselective mGluR ligand (+/-)-2 led to derivative (+/-)-5, which behaved as a selective group I metabotropic receptor antagonist. Notably, upon i.c.v. administration in DBA/2 mice, amino acid (+/-)-5 produced a significant protection against audiogenic seizures, whereas it was inactive after i.p. administration.

摘要

将谷氨酸链进行同源化并结合构象限制是实现对不同类型谷氨酸受体选择性的常用策略。我们研究了模型化合物(+/-)-1和(+/-)-2的氨基酸部分与远端羧基之间距离的进一步增加对其活性/选择性概况的影响。因此,我们合成了新的衍生物(+/-)-3-(+/-)-6,它们是含有三个额外碳单元的谷氨酸同系物。此外,由于用生物电子等排体膦酸酯基团取代远端羧酸盐可显著提高NMDA拮抗剂的效力,我们还制备了相应的膦酸酯衍生物(+/-)-7-(+/-)-10。所有新化合物都进行了与离子型谷氨酸受体的结合试验,衍生物(+/-)-3-(+/-)-6也在代表性的代谢型谷氨酸受体亚型的第二信使试验中进行了测试。所有应用的结构修饰均不利于与NMDA受体的相互作用。相反,非选择性代谢型谷氨酸受体配体(+/-)-2的结构变异产生了衍生物(+/-)-5,其表现为选择性I组代谢型受体拮抗剂。值得注意的是,在DBA/2小鼠中脑室内给药时,氨基酸(+/-)-5对听源性癫痫发作有显著的保护作用,而腹腔注射后则无活性。

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