| Literature DB >> 26584396 |
Freek J Janssen1, Marc P Baggelaar1, Jessica J A Hummel1, Herman S Overkleeft2, Benjamin F Cravatt3, Dale L Boger4, Mario van der Stelt1.
Abstract
Diacylglycerol lipase α (DAGLα) is responsible for the formation of the endocannabinoid 2-arachidonoylglycerol (2-AG) in the central nervous system. DAGLα inhibitors are required to study the physiological role of 2-AG. Previously, we identified the α-ketoheterocycles as potent and highly selective DAGLα inhibitors. Here, we present the first comprehensive structure-activity relationship study of α-ketoheterocycles as DAGLα inhibitors. Our findings indicate that the active site of DAGLα is remarkably sensitive to the type of heterocyclic scaffold with oxazolo-4N-pyridines as the most active framework. We uncovered a fundamental substituent effect in which electron-withdrawing meta-oxazole substituents increased inhibitor potency. (C6-C9)-acyl chains with a distal phenyl group proved to be the most potent inhibitors. The integrated SAR data was consistent with the proposed binding pose in a DAGLα homology model. Altogether, our results may guide the design of future DAGLα inhibitors as leads for molecular therapies to treat neuroinflammation, obesity, and related metabolic disorders.Entities:
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Year: 2015 PMID: 26584396 PMCID: PMC4690813 DOI: 10.1021/acs.jmedchem.5b01627
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446