Mahesh Puthanveedu, Natasha Dale, Rebecca Knight, Eleonora Comeo, Nicholas D Kindon, Barrie Kellam, Laura E Kilpatrick, Stephen J Hill, Michael J Stocks
Antagonism of purinergic P2Y2 receptors offers potential benefits in the treatment of inflammatory diseases, neurodegenerative disorders, and cancer. Despite the promising preclinical potential, only a limited number of potent and selective non-nucleotide P2Y2R antagonists are known, including AR-C118925, which has been extensively used to study inhibition of the P2Y2R. However, unfavorable physicochemical properties and the presence of a reactive and photo-unstable 4-thiouracil moiety have limited their preclinical progress. Through a fragment recombination approach utilizing P2Y2R privileged fragments to explore non-additive SAR trends in combination with molecular docking studies, we discovered a series of potent uracil-based P2Y2R antagonists, such as compound 26a (pKi (whole cells) 6.55 ± 0.05). Molecular docking of 26a led to rationalization of the unexpected affinity for 26a, and led to the identification of new stable, uracil-based fluorescent ligands targeting the P2Y2R.