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Published on: September 27, 2024
Molecular Basis of Ligand Dissociation from the Adenosine A2A Receptor
Dong Guo1, Albert C Pan1, Ron O Dror1
1Division of Medicinal Chemistry, Leiden Academic Centre for Drug Research, Leidorken University, RA Leiden, The Netherlands (D.G., T.M., R.L., L.H.H., A.P.I.J.); D. E. Shaw Research, New York, New York (A.C.P., R.O.D., D.E.S.); and Department of Biochemistry and Molecular Biophysics, Columbia University, New York, New York (D.E.S.).
Abstract:
How drugs dissociate from their targets is largely unknown. We investigated the molecular basis of this process in the adenosine A2Areceptor (A2AR), a prototypical G protein-coupled receptor (GPCR). Through kinetic radioligand binding experiments, we characterized mutant receptors selected based on molecular dynamic simulations of the antagonist ZM241385 dissociating from the A2AR. We discovered mutations that dramatically altered the ligand's dissociation rate despite only marginally influencing its binding affinity, demonstrating that even receptor features with little contribution to affinity may prove critical to the dissociation process. Our results also suggest that ZM241385 follows a multistep dissociation pathway, consecutively interacting with distinct receptor regions, a mechanism that may also be common to many other GPCRs.
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