Structural basis of selective cannabinoid CB2 receptor activation

Author:

Li XiaotingORCID,Chang HaoORCID,Bouma JaraORCID,de Paus Laura V.ORCID,Mukhopadhyay Partha,Paloczi Janos,Mustafa Mohammed,van der Horst CasORCID,Kumar Sanjay SunilORCID,Wu Lijie,Yu Yanan,van den Berg Richard J. B. H. N.,Janssen Antonius P. A.ORCID,Lichtman Aron,Liu Zhi-JieORCID,Pacher PalORCID,van der Stelt MarioORCID,Heitman Laura H.ORCID,Hua TianORCID

Abstract

AbstractCannabinoid CB2 receptor (CB2R) agonists are investigated as therapeutic agents in the clinic. However, their molecular mode-of-action is not fully understood. Here, we report the discovery of LEI-102, a CB2R agonist, used in conjunction with three other CBR ligands (APD371, HU308, and CP55,940) to investigate the selective CB2R activation by binding kinetics, site-directed mutagenesis, and cryo-EM studies. We identify key residues for CB2R activation. Highly lipophilic HU308 and the endocannabinoids, but not the more polar LEI-102, APD371, and CP55,940, reach the binding pocket through a membrane channel in TM1-TM7. Favorable physico-chemical properties of LEI-102 enable oral efficacy in a chemotherapy-induced nephropathy model. This study delineates the molecular mechanism of CB2R activation by selective agonists and highlights the role of lipophilicity in CB2R engagement. This may have implications for GPCR drug design and sheds light on their activation by endogenous ligands.

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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