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Updated: Jan 10, 2026

Methods for the Discovery of Novel Compounds Modulating a Gamma-Aminobutyric Acid Receptor Type A Neurotransmission
Published on: August 16, 2018
Structure-Function Activity Relationships of Cariprazine Analogues with Distinct G Protein versus β-Arrestin
Bradley M Keegan1,2, Caleb D Vogt1, Li Chen2
1Medicinal Chemistry Section, Molecular Targets and Medications Discovery Branch, National Institute on Drug Abuse ─ Intramural Research Program, National Institutes of Health, 333 Cassell Drive, Baltimore, Maryland 21224, United States.
Abstract:
Psychostimulant use disorder (PSUD) remains an unmet medical need, with no FDA-approved pharmacotherapies currently available. The dopamine D3 receptor (D3R), due to its selective expression in mesolimbic reward circuits, has emerged as a compelling target for PSUD intervention. We used cariprazine (1a), a D3R-preferring antipsychotic that reduces cocaine-related behaviors in preclinical models, as a scaffold for the synthesis of a library of novel derivatives. We employed BRET-based assays to functionally characterize their effects on G protein and β-arrestin2 signaling at D3R. Structure-function relationship analyses revealed that modifications to the phenylpiperazine moiety of cariprazine are the key determinants of D3R efficacy, potentially through diverse interactions with transmembrane segment 5. Moreover, certain substitutions to this aromatic primary pharmacophore appear to confer D3R/D2R functional divergence. These findings offer key mechanistic insights and inform the rational design of next-generation bitopic ligands with optimized signaling properties for the treatment of PSUD and related disorders.
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