Departments of Nutrition, Biochemistry and Molecular Medicine, University of Montreal, and Montreal Diabetes Research Center, CRCHUM, Montreal, Canada.
Diabetes Obes Metab. 2017 Sep;19 Suppl 1:76-89. doi: 10.1111/dom.13008.
Lipid metabolism dysregulation underlies chronic pathologies such as obesity, diabetes and cancer. Besides their role in structure and energy storage, lipids are also important signalling molecules regulating multiple biological functions. Thus, understanding the precise lipid metabolism enzymatic steps that are altered in some pathological conditions is helpful for designing better treatment strategies. Several monoacylglycerol (MAG) species are only recently being recognized as signalling lipid molecules in different tissues. Recent studies indicated the importance of the ubiquitously expressed serine hydrolase α/β-hydrolase domain 6 (ABHD6), which is a MAG hydrolase, in regulating signalling competent MAG in both central and peripheral tissues. The central and peripheral function of the endocannabinoid 2-arachidonoylglycerol, which is a 2-MAG, and its breakdown by both ABHD6 and classical MAG lipase has been well documented. ABHD6 and its substrate MAG appear to be involved in the regulation of various physiological and pathological processes including insulin secretion, adipose browning, food intake, neurotransmission, autoimmune disorders, neurological and metabolic diseases as well as cancer. Diverse cellular targets such as mammalian unc13-1 (Munc13-1), PPARs, GPR119 and CB1/2 receptors, for MAG-mediated signalling processes have been proposed in different cell types. The purpose of this review is to provide a comprehensive summary of the current state of knowledge regarding ABHD6/MAG signalling and its possible therapeutic implications.
脂质代谢失调是肥胖症、糖尿病和癌症等慢性疾病的基础。除了在结构和能量存储方面的作用外,脂质还是调节多种生物功能的重要信号分子。因此,了解某些病理条件下发生改变的精确脂质代谢酶促步骤有助于设计更好的治疗策略。几种单酰基甘油(MAG)种类最近才被认为是不同组织中的信号脂质分子。最近的研究表明,广泛表达的丝氨酸水解酶 α/β-水解酶结构域 6(ABHD6)在调节中枢和外周组织中信号功能齐全的 MAG 方面的重要性。内源性大麻素 2-花生四烯酸甘油,即 2-MAG,及其由 ABHD6 和经典 MAG 脂肪酶分解的中央和外周功能已得到充分证明。ABHD6 及其底物 MAG 似乎参与了各种生理和病理过程的调节,包括胰岛素分泌、脂肪褐变、摄食、神经传递、自身免疫性疾病、神经和代谢疾病以及癌症。在不同的细胞类型中,已经提出了多种细胞靶标,例如 MAG 介导的信号转导过程中的哺乳动物 unc13-1(Munc13-1)、PPARs、GPR119 和 CB1/2 受体。这篇综述的目的是全面总结关于 ABHD6/MAG 信号及其可能的治疗意义的最新知识状态。