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芳基重氮化合物和重氮盐作为γ-氨基丁酸受体的潜在不可逆探针。

Aryl diazo compounds and diazonium salts as potential irreversible probes of the gamma-aminobutyric acid receptor.

作者信息

Bouchet M J, Rendon A, Wermuth C G, Goeldner M, Hirth C

机构信息

Laboratoire de Chimie Bio-Organique (UA31 CNRS), Faculté de Pharmacie, Université Louis Pasteur, Strasbourg, France.

出版信息

J Med Chem. 1987 Dec;30(12):2222-7. doi: 10.1021/jm00395a008.

DOI:10.1021/jm00395a008
PMID:2824775
Abstract

The synthesis of different diazonium salts derived from homo- and heterocyclic aromatic amines bearing anionic residues is described. The chemical stabilities of these compounds were established at different pH's, and the compounds were tested accordingly in binding experiments for the rat brain gamma-aminobutyric acid (GABA) receptor, for which they could ultimately be used as irreversible affinity or photoaffinity probes. The aromatic heterocyclic series studied were 2-aminoimidazole, 2-aminothiazole, and 4-aminopyridine N-oxide. The derived diazonium salts are unstable compounds at neutral pH unless they are able to be deprotonated to the corresponding diazo form. As such, the 2-diazoimidazole-4(5)-acetic acid (3b) is stable in neutral medium and recognizes the GABA receptor (IC50 = 70 microM). The homocyclic aromatic diazonium salts showed sufficient stability to be tested in binding experiments. The diazonium salts derived from m-sulfanilic acid and 8-sulfonaphthylamine were the most interesting (10b, IC50 = 10 microM; 15b, IC50 less than 100 microM). In this series, the compounds that deprotonate at neutral pH (hydroxybenzenediazonium derivatives 12b-14b) showed increased chemical stability but decreased affinity for the GABA receptor. This difference between the diazoimidazole and the diazohydroxybenzene series is attributed to a different charge distribution between the two series. The ligands 3b, 10b, and 15b can be used as potential irreversible probes for the GABA receptor.

摘要

本文描述了带有阴离子残基的同环和杂环芳香胺衍生的不同重氮盐的合成。在不同pH值下确定了这些化合物的化学稳定性,并相应地在大鼠脑γ-氨基丁酸(GABA)受体结合实验中对这些化合物进行了测试,最终它们可用作不可逆亲和或光亲和探针。所研究的芳香杂环系列为2-氨基咪唑、2-氨基噻唑和4-氨基吡啶N-氧化物。除非能够脱质子化为相应的重氮形式,否则衍生的重氮盐在中性pH下是不稳定的化合物。因此,2-重氮咪唑-4(5)-乙酸(3b)在中性介质中稳定,并能识别GABA受体(IC50 = 70 μM)。同环芳香重氮盐表现出足够的稳定性,可用于结合实验测试。由间氨基苯磺酸和8-磺酸萘胺衍生的重氮盐最具研究价值(10b,IC50 = 10 μM;15b,IC50小于100 μM)。在该系列中,在中性pH下脱质子的化合物(羟基苯重氮衍生物12b - 14b)化学稳定性增加,但对GABA受体的亲和力降低。重氮咪唑和重氮羟基苯系列之间的这种差异归因于两个系列之间不同的电荷分布。配体3b、10b和15b可用作GABA受体的潜在不可逆探针。

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