Semisynthetic Transformations on (+)-Boldine Reveal a 5-HT 2A/2C R Antagonist.

Journal of natural products(2022)

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摘要
Aporphine alkaloids have shown affinity for serotonin receptors (5-HTRs), and there has been a recent upsurge of interest in aporphines as 5-HTR ligands. 1,2,9,10-Tetraoxygenated aporphine alkaloids in particular have demonstrated good affinity for 5-HTRs. In continued efforts to understand the impacts of structural modification of the 1,2,9,10-tetraoxygenated aporphine template on affinity, selectivity, and activity at 5-HTR subtypes, we used (+)-boldine () as a semisynthetic feedstock in the preparation of C-2-alkoxylated (+)-predicentrine analogues. Compound , which contains a benzyloxy group at C-2, has been identified as a novel 5-HTR ligand with strong affinity (4 nM) and moderate selectivity versus 5-HTR and 5-HTR (12-fold and 6-fold, respectively). Compound functions as an antagonist at 5-HT and 5-HT receptors. Computational experiments indicate that several hydrophobic interactions as well as strong H-bond and salt bridge interactions between the protonated amine moiety in and Asp134 are responsible for the potent 5-HTR affinity of this compound. Furthermore, compound displays favorable predicted drug-like characteristics, which is encouraging toward future optimization.
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