Structural basis of Δ9-THC analog activity at the Cannabinoid 1 receptor

Author:

Thorsen Thor1,Kulkarni Yashraj1,Sykes David2ORCID,Bøggild Andreas3ORCID,Drace Taner3,Hompluem Pattarin2,Iliopoulos-Tsoutsouvas Christos4,Nikas Spyros4ORCID,Daver Henrik1ORCID,Makriyannis Alexandros4,Nissen Poul3,Gajhede Michael1ORCID,Veprintsev Dmitry2ORCID,Boesen Thomas3,Kastrup Jette1,Gloriam David1ORCID

Affiliation:

1. University of Copenhagen

2. University of Nottingham

3. Aarhus University

4. Northeastern University

Abstract

Abstract

Δ9-tetrahydrocannabinol (THC) is the principal psychoactive compound derived from the cannabis plant Cannabis sativa and approved for emetic conditions, appetite stimulation and sleep apnea relief. THC’s psychoactive actions are mediated primarily by the cannabinoid receptor CB1. Here, we determine the cryo-EM structure of HU210, a THC analog and widely used tool compound, bound to CB1 and its primary transducer, Gi1. We leverage this structure for docking and 1,000 ns molecular dynamics simulations of THC and 10 structural analogs delineating their spatiotemporal interactions at the molecular level. Furthermore, we pharmacologically profile their recruitment of Gi and β-arrestins and reversibility of binding from an active complex. By combining detailed CB1 structural information with molecular models and signaling data we uncover the differential spatiotemporal interactions these ligands make to receptors governing potency, efficacy, bias and kinetics. This may help explain the actions of abused substances, advance fundamental receptor activation studies and design better medicines.

Publisher

Research Square Platform LLC

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