N-酰基乙醇胺生物合成的酶学研究

Enzymological studies on the biosynthesis of N-acylethanolamines.

作者信息

Ueda Natsuo, Tsuboi Kazuhito, Uyama Toru

机构信息

Department of Biochemistry, Kagawa University School of Medicine, 1750-1 Ikenobe, Miki, Kagawa 761-0793, Japan.

出版信息

Biochim Biophys Acta. 2010 Dec;1801(12):1274-85. doi: 10.1016/j.bbalip.2010.08.010. Epub 2010 Aug 21.

Abstract

Ethanolamides of different long-chain fatty acids constitute a class of endogenous lipid molecules generally called N-acylethanolamines (NAEs). They contain N-arachidonoylethanolamine (anandamide), N-palmitoylethanolamine, and N-oleoylethanolamine, which receive considerable attention because of their actions as an endogenous cannabinoid receptor ligand (endocannabinoid), an anti-inflammatory substance, and an appetite-suppressing substance, respectively. Identification of their biosynthetic routes in animal tissues and molecular characterization of the enzymes involved are essential for better understanding of physiological importance of NAEs as well as development of enzyme inhibitors as possible therapeutic drugs. In the classical "transacylation-phosphodiesterase pathway", NAEs are formed from glycerophospholipids via N-acylphosphatidylethanolamine (NAPE), an unusual derivative of phosphatidylethanolamine with a third acyl chain attached to the amino group, by sequential catalyses by Ca(2+)-dependent N-acyltransferase and NAPE-hydrolyzing phospholipase D. However, recent studies reveal that NAE-generating pathways are more complex than presumed before. In this review article, we will focus on recent findings regarding mammalian enzymes that are involved or might be involved in the biosynthesis of NAEs.

摘要

不同长链脂肪酸的乙醇酰胺构成了一类内源性脂质分子,通常被称为N-酰基乙醇胺(NAEs)。它们包含N-花生四烯酰乙醇胺(花生四烯酸乙醇胺)、N-棕榈酰乙醇胺和N-油酰乙醇胺,分别作为内源性大麻素受体配体(内源性大麻素)、抗炎物质和食欲抑制物质而受到广泛关注。确定它们在动物组织中的生物合成途径以及所涉及酶的分子特征,对于更好地理解NAEs的生理重要性以及开发作为潜在治疗药物的酶抑制剂至关重要。在经典的“转酰基化-磷酸二酯酶途径”中,NAEs由甘油磷脂通过N-酰基磷脂酰乙醇胺(NAPE)形成,NAPE是磷脂酰乙醇胺的一种特殊衍生物,其氨基上连接有第三条酰基链,通过钙依赖的N-酰基转移酶和水解NAPE的磷脂酶D的顺序催化作用。然而,最近的研究表明,NAE生成途径比之前推测的更为复杂。在这篇综述文章中,我们将重点关注关于参与或可能参与NAEs生物合成的哺乳动物酶的最新发现。

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