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新型脂肪酸酰胺水解酶抑制剂——芳基烷基氨基甲酸酯的设计、合成及构效关系

Design, synthesis, and structure-activity relationships of alkylcarbamic acid aryl esters, a new class of fatty acid amide hydrolase inhibitors.

作者信息

Tarzia Giorgio, Duranti Andrea, Tontini Andrea, Piersanti Giovanni, Mor Marco, Rivara Silvia, Plazzi Pier Vincenzo, Park Chris, Kathuria Satish, Piomelli Daniele

机构信息

Istituto di Chimica Farmaceutica e Tossicologica, Università degli Studi di Urbino Carlo Bo, Piazza del Rinascimento 6, Italy.

出版信息

J Med Chem. 2003 Jun 5;46(12):2352-60. doi: 10.1021/jm021119g.

Abstract

Fatty acid amide hydrolase (FAAH), an intracellular serine hydrolase enzyme, participates in the deactivation of fatty acid ethanolamides such as the endogenous cannabinoid anandamide, the intestinal satiety factor oleoylethanolamide, and the peripheral analgesic and anti-inflammatory factor palmitoylethanolamide. In the present study, we report on the design, synthesis, and structure-activity relationships (SAR) of a novel class of potent, selective, and systemically active inhibitors of FAAH activity, which we have recently shown to exert potent anxiolytic-like effects in rats. These compounds are characterized by a carbamic template substituted with alkyl or aryl groups at their O- and N-termini. Most compounds inhibit FAAH, but not several other serine hydrolases, with potencies that depend on the size and shape of the substituents. Initial SAR investigations suggested that the requirements for optimal potency are a lipophilic N-alkyl substituent (such as n-butyl or cyclohexyl) and a bent O-aryl substituent. Furthermore, the carbamic group is essential for activity. A 3D-QSAR analysis on the alkylcarbamic acid aryl esters showed that the size and shape of the O-aryl moiety are correlated with FAAH inhibitory potency. A CoMSIA model was constructed, indicating that whereas the steric occupation of an area corresponding to the meta position of an O-phenyl ring improves potency, a region of low steric tolerance on the enzyme active site exists corresponding to the para position of the same ring. The bent shape of the O-aryl moieties that best fit the enzyme surface closely resembles the folded conformations observed in the complexes of unsaturated fatty acids with different proteins. URB524 (N-cyclohexylcarbamic acid biphenyl-3-yl ester, 9g) is the most potent compound of the series (IC(50) = 63 nM) and was therefore selected for further optimization.

摘要

脂肪酸酰胺水解酶(FAAH)是一种细胞内丝氨酸水解酶,参与脂肪酸乙醇酰胺的失活,如内源性大麻素花生四烯乙醇胺、肠道饱腹感因子油酰乙醇胺以及外周镇痛和抗炎因子棕榈酰乙醇胺。在本研究中,我们报告了一类新型高效、选择性和全身活性的FAAH活性抑制剂的设计、合成及构效关系(SAR),我们最近已证明这些抑制剂在大鼠中具有强效抗焦虑样作用。这些化合物的特征是在其O端和N端被烷基或芳基取代的氨基甲酸盐模板。大多数化合物抑制FAAH,但不抑制其他几种丝氨酸水解酶,其效力取决于取代基的大小和形状。初步的SAR研究表明,最佳效力的要求是亲脂性N-烷基取代基(如正丁基或环己基)和弯曲的O-芳基取代基。此外,氨基甲酸盐基团对活性至关重要。对烷基氨基甲酸芳基酯的三维定量构效关系分析表明,O-芳基部分的大小和形状与FAAH抑制效力相关。构建了一个比较分子相似性指数分析(CoMSIA)模型,表明与O-苯环间位相对应区域的空间占据提高了效力,而在酶活性位点上与同一环对位相对应的区域存在低空间耐受性区域。最适合酶表面的O-芳基部分的弯曲形状与不饱和脂肪酸与不同蛋白质复合物中观察到的折叠构象非常相似。URB524(N-环己基氨基甲酸联苯-3-基酯,9g)是该系列中最有效的化合物(IC50 = 63 nM),因此被选用于进一步优化。

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