Molecular biology of the enzymes that degrade endocannabinoids.

Robyn A Puffenbarger
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引用次数: 32

Abstract

Endocannabinoid circuits have been shown to regulate a number of important pathways including pain, feeding, memory and motor coordination. Direct manipulation of endocannabinoid tone, therefore, may relieve disease symptoms related to analgesia, obesity, Alzheimer's and Parkinson's in humans. The endocannabinoid circuit involves two cloned receptors: CB1 in the CNS and CB2 in the periphery; endogenously produced ligands including anandamide, 2-arachidonylglycerol and palmitoylethanolamide; and enzymes that degrade endocannabinoid ligands to terminate signaling. Currently, three enzymes have been characterized with the ability to hydrolyze endocannabinoids: fatty acid amide hydrolase (FAAH), monoglyceride lipase (MGL) and N-acylethanolamine-hydrolyzing acid amidase (NAAA). The purpose of this review is to examine the molecular biology for the enzymes that hydrolyze endocannabinoids covering the protein activity and expression, mRNA characterization, genomic locus organization, promoter analysis and knockout phenotypes.

降解内源性大麻素的酶的分子生物学。
内源性大麻素回路已被证明可以调节许多重要的通路,包括疼痛、进食、记忆和运动协调。因此,直接操纵内源性大麻素张力可以缓解与人类镇痛、肥胖、阿尔茨海默氏症和帕金森症相关的疾病症状。内源性大麻素回路涉及两个克隆受体:CNS中的CB1和外周的CB2;内源性配体包括花生酰胺、2-花生四烯酰基甘油和棕榈乙醇酰胺;以及降解内源性大麻素配体以终止信号传递的酶。目前,有三种酶具有水解内源性大麻素的能力:脂肪酸酰胺水解酶(FAAH)、单甘油酯脂肪酶(MGL)和n -酰基乙醇胺水解酸酰胺酶(NAAA)。本文综述了内源性大麻素水解酶的分子生物学研究进展,包括蛋白质活性和表达、mRNA表征、基因组位点组织、启动子分析和敲除表型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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