Methylation and acetylation of 15-hydroxyanandamide modulate its interaction with the endocannabinoid system |
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Authors: | Daniele Amadio,Filomena Fezza,Giuseppina Catanzaro,Ottaviano Incani,Guus van Zadelhoff,Alessandro Finazzi Agrò ,Mauro Maccarrone |
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Affiliation: | 1. Department of Experimental Medicine and Biochemical Sciences, University of Rome, Tor Vergata, Rome, Italy;2. European Center for Brain Research (CERC)/Santa Lucia Foundation IRCCS, Rome, Italy;3. Department of Biomedical Sciences, University of Teramo, Piazza A. Moro 45, 64100 Teramo, Italy;4. Colosseum Combinatorial Chemistry, Centre for Technology, Rome, Italy;5. Department of Chemistry, Utrecht University, Utrecht, The Netherlands |
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Abstract: | The biological activity of endocannabinoids like anandamide (AEA) and 2-arachidonoylglycerol (2-AG) is subjected in vivo to a “metabolic control”, exerted mainly by catabolic enzymes. AEA is inactivated by fatty acid amide hydrolase (FAAH), that is inhibited competitively by hydroxyanandamides (HAEAs) generated from AEA by lipoxygenase activity. Among these derivatives, 15-HAEA has been shown to be an effective (Ki ∼0.6 μM) FAAH inhibitor, that blocks also type-1 cannabinoid receptor (CB1R) but not other components of the “endocannabinoid system (ECS)”, like the AEA transporter (AMT) or CB2R. Here, we extended the study of the effect of 15-HAEA on the AEA synthetase (NAPE-PLD) and the AEA-binding vanilloid receptor (TRPV1), showing that 15-HAEA activates the former (up to ∼140% of controls) and inhibits the latter protein (down to ∼70%). We also show that 15-HAEA halves the synthesis of 2-AG and almost doubles the transport of this compound across the membrane. In addition, we synthesized methyl and acetyl derivatives of 15-HAEA (15-MeOAEA and 15-AcOAEA, respectively), in order to check their ability to modulate FAAH and the other ECS elements. In fact, methylation and acetylation are common biochemical reactions in the cellular environment. We show that 15-MeOAEA, unlike 15-AcOAEA, is still a powerful competitive inhibitor of FAAH (Ki ∼0.7 μM), and that both derivatives have negligible interactions with the other proteins of ECS. Therefore, 15-MeOAEA is a FAAH inhibitor more selective than 15-HAEA. Further molecular dynamics analysis gave clues to the molecular requirements for the interaction of 15-HAEA and 15-MeOAEA with FAAH. |
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Keywords: | Anandamide 2-Arachidonoylglycerol Fatty acid amide hydrolase Natural inhibitors |
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