首页> 外文期刊>Journal of the American Chemical Society >INHIBITION OF OLEAMIDE HYDROLASE CATALYZED HYDROLYSIS OF THE ENDOGENOUS SLEEP-INDUCING LIPID CIS-9-OCTADECENAMIDE
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INHIBITION OF OLEAMIDE HYDROLASE CATALYZED HYDROLYSIS OF THE ENDOGENOUS SLEEP-INDUCING LIPID CIS-9-OCTADECENAMIDE

机译:抑制内酰胺诱导脂质CIS-9-十八碳酰胺的油酰胺水解酶催化水解

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摘要

Oleamide (1, cis-9-octadecenamide) is a naturally occurring brain constituent that. has been shown to accumulate and disappear under conditions of sleep deprivation and sleep recovery, respectively. Synthetic 1 has been found to induce sleep in a structurally specific manner at nanomolar quantities. Hydrolysis of 1 by an enzyme (oleamide hydrolase) present in the cell membrane rapidly degrades oleamide to oleic acid (cis-9-octadecenoic acid). Such observations suggest 1 may constitute a prototypical member of a class of fatty acid primary amide biological signaling molecules in which the diversity and selectivity of function are derived from the length of the alkane chain as well as the position, stereochemistry, and degree of unsaturation. A series of inhibitors of oleamide hydrolase were designed and prepared which were expected to derive their properties through interactions with the putative active site cysteine residue within oleamide hydrolase. This approach yielded a series of rapid, selective, and highly potent inhibitors (K-i = 13 mu M to 1 nM) which in addition to their potential therapeutic value may serve as useful tools to define the biological role of oleamide.
机译:油酰胺(1,顺式-9-十八烯酰胺)是一种天然存在的大脑成分。分别显示在睡眠剥夺和睡眠恢复的条件下会累积并消失。已经发现合成物1以纳摩尔量以结构上特定的方式诱导睡眠。细胞膜中存在的酶(油酸酰胺水解酶)水解1会将油酸酰胺快速降解为油酸(顺式9-十八烯酸)。这些观察结果提示1可能构成了一类脂肪酸伯酰胺生物信号分子的原型成员,其中功能的多样性和选择性是从烷烃链的长度以及位置,立体化学和不饱和度中得出的。设计和制备了一系列油酰胺水解酶抑制剂,它们有望通过与油酰胺水解酶中假定的活性位点半胱氨酸残基相互作用而获得其性能。这种方法产生了一系列快速,选择性和高效的抑制剂(K-1 = 13μM至1 nM),这些抑制剂除了具有潜在的治疗价值外,还可作为确定油酰胺生物学作用的有用工具。

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