Blankman_2007_Chem.Biol_14_1347

Reference

Title : A comprehensive profile of brain enzymes that hydrolyze the endocannabinoid 2-arachidonoylglycerol - Blankman_2007_Chem.Biol_14_1347
Author(s) : Blankman JL , Simon GM , Cravatt BF
Ref : Chemical Biology , 14 :1347 , 2007
Abstract :

Endogenous ligands for cannabinoid receptors ("endocannabinoids") include the lipid transmitters anandamide and 2-arachidonoylglycerol (2-AG). Endocannabinoids modulate a diverse set of physiological processes and are tightly regulated by enzymatic biosynthesis and degradation. Termination of anandamide signaling by fatty acid amide hydrolase (FAAH) is well characterized, but less is known about the inactivation of 2-AG, which can be hydrolyzed by multiple enzymes in vitro, including FAAH and monoacylglycerol lipase (MAGL). Here, we have taken a functional proteomic approach to comprehensively map 2-AG hydrolases in the mouse brain. Our data reveal that approximately 85% of brain 2-AG hydrolase activity can be ascribed to MAGL, and that the remaining 15% is mostly catalyzed by two uncharacterized enzymes, ABHD6 and ABHD12. Interestingly, MAGL, ABHD6, and ABHD12 display distinct subcellular distributions, suggesting that they may control different pools of 2-AG in the nervous system.

PubMedSearch : Blankman_2007_Chem.Biol_14_1347
PubMedID: 18096503
Gene_locus related to this paper: human-ABHD6 , human-ABHD12 , human-MGLL

Related information

Inhibitor FP-Biotin
Substrate 2-Arachidonylglycerol
Gene_locus human-ABHD6    human-ABHD12    human-MGLL
Family ABHD12-PHARC    ABHD6-Lip

Citations formats

Blankman JL, Simon GM, Cravatt BF (2007)
A comprehensive profile of brain enzymes that hydrolyze the endocannabinoid 2-arachidonoylglycerol
Chemical Biology 14 :1347

Blankman JL, Simon GM, Cravatt BF (2007)
Chemical Biology 14 :1347