Patricelli M P, Patterson J E, Boger D L, Cravatt B F
Skaggs Institute for Chemical Biology, La Jolla, California, USA.
Bioorg Med Chem Lett. 1998 Mar 17;8(6):613-8. doi: 10.1016/s0960-894x(98)00073-0.
2-Octyl gamma-bromoacetoacetate (O gamma Br), an endogenous compound originally isolated from human cerebrospinal fluid (CSF), has previously been demonstrated to increase REM sleep duration in cats. Based on the chemical structure of O gamma Br and its reported sleep-inducing effects, we synthesized O gamma Br along with chemically related analogs and tested these compounds as inhibitors of fatty acid amide hydrolase (FAAH), a brain enzyme that degrades neuromodulatory fatty acid amides. O gamma Br was found to competitively inhibit FAAH activity with IC50 and Ki values of 2.6 microM and 0.8 microM, respectively [for the (R)-enantiomer of O gamma Br (1)]. A set of synthetic analogs of O gamma Br was examined to define the structural features required for FAAH inhibition and inhibitor potencies were assessed at pH 9.0 (near the pH optimum of FAAH) and pH 7.0. Interestingly, at pH 7.0 the gamma-halo beta-keto ester inhibitors proved to be significantly more potent than the trifluoromethyl ketone of oleic acid, one of the most potent FAAH inhibitors described to date. This study supports the possibility that O gamma Br may be a physiological regulator of FAAH activity and fatty acid amide levels in vivo. Additionally, the characterization of gamma-halo beta-keto esters as powerful FAAH inhibitors near physiological pH may aid in future studies of the enzymology and biological properties of FAAH.
2-辛基γ-溴代乙酰乙酸酯(OγBr)是一种最初从人脑脊液(CSF)中分离出的内源性化合物,先前已证明它能增加猫的快速眼动睡眠时长。基于OγBr的化学结构及其报道的促眠作用,我们合成了OγBr及其化学相关类似物,并将这些化合物作为脂肪酸酰胺水解酶(FAAH)的抑制剂进行测试,FAAH是一种降解神经调节性脂肪酸酰胺的脑酶。结果发现,OγBr能竞争性抑制FAAH活性,其IC50和Ki值分别为2.6微摩尔和0.8微摩尔[针对OγBr(1)的(R)-对映体]。我们研究了一组OγBr的合成类似物,以确定抑制FAAH所需的结构特征,并在pH 9.0(接近FAAH的最适pH)和pH 7.0下评估抑制剂的效力。有趣的是,在pH 7.0时,γ-卤代β-酮酯抑制剂被证明比油酸三氟甲基酮(迄今为止描述的最有效的FAAH抑制剂之一)更有效。这项研究支持了OγBr可能是体内FAAH活性和脂肪酸酰胺水平的生理调节剂的可能性。此外,将γ-卤代β-酮酯表征为接近生理pH的强效FAAH抑制剂可能有助于未来对FAAH的酶学和生物学特性的研究。