jm7b01113_si_001.pdf (1.2 MB)
Download fileStructure-Based Design and Discovery of New M2 Receptor Agonists
journal contribution
posted on 02.11.2017, 00:00 authored by Inbar Fish, Anne Stößel, Katrin Eitel, Celine Valant, Sabine Albold, Harald Huebner, Dorothee Möller, Mary J. Clark, Roger K. Sunahara, Arthur Christopoulos, Brian K. Shoichet, Peter GmeinerMuscarinic receptor agonists are
characterized by apparently strict
restraints on their tertiary or quaternary amine and their distance
to an ester or related center. On the basis of the active state crystal
structure of the muscarinic M2 receptor in complex with
iperoxo, we explored potential agonists that lacked the highly conserved
functionalities of previously known ligands. Using structure-guided
pharmacophore design followed by docking, we found two agonists (compounds 3 and 17), out of 19 docked and synthesized compounds,
that fit the receptor well and were predicted to form a hydrogen-bond
conserved among known agonists. Structural optimization led to compound 28, which was 4-fold more potent than its parent 3. Fortified by the discovery of this new scaffold, we sought a broader
range of chemotypes by docking 2.2 million fragments, which revealed
another three micromolar agonists unrelated either to 28 or known muscarinics. Even pockets as tightly defined and as deeply
studied as that of the muscarinic reveal opportunities for the structure-based
design and the discovery of new chemotypes.