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Updated: Jun 10, 2025

Author Spotlight: Advancing Cellular and Protein Engineering to Control Biological Functions and Develop Novel Therapies
Published on: September 27, 2024
Structure-Activity Relationship of Truncated 4'-Selenonucleosides: A3 Adenosine Receptor Activity and Binding
Minjae Kim1, Hongseok Choi1, Akshata Nayak2
1Research Institute of Pharmaceutical Sciences, College of Pharmacy, Seoul National University, Seoul 08826, Korea.
Abstract:
This study explored the impact of structural modifications on truncated 4'-selenonucleosides as ligands for the A3 adenosine receptor (AR). We synthesized and evaluated a series of these compounds for their binding affinities, functional activities, and structural interactions by using computational modeling. The SAR study revealed that all compounds exhibited selective and notable hA3AR binding, among which 6l (K i = 5.2 nM) and 6m (K i = 5.7 nM) were found as the best binding compounds. The representative N 6-cyclopropyl compound 6m was found to be a partial agonist, contrasting with the antagonist profiles of truncated 4'-oxo and 4'-thionucleosides. Computational docking highlighted 6m's unique interaction with Thr94 at the A3AR binding site. This research not only advances our understanding of A3AR ligand interactions but also highlights the potential of truncated 4'-selenonucleosides as effective A3AR modulators.
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