Skip to main content
Article
Discovery, Optimization, and Characterization of ML417: A Novel and Highly Selective D3 Dopamine Receptor Agonist.
Journal of Medicinal Chemistry (2020)
  • Amy E. Moritz, National Institutes of Health
  • R. Benjamin Free, National Institutes of Health
  • Warren S. Weiner, University of Kansas
  • Emmanuel O. Akano, National Institutes of Health
  • Disha Gandhi, University of North Carolina at Chapel Hill
  • Ara Abramyan, National Institute on Drug Abuse
  • Thomas M. Keck, Rowan University
  • Marc Ferrer, National Institutes of Health
  • Xin Hu, National Institutes of Health
  • Noel Southall, National Institutes of Health
  • Joseph Steiner, National Institutes of Health
  • Jeffrey Aubé, University of North Carolina at Chapel Hill
  • Jeffrey Aubé, University of Kansas
  • Lei Shi, National Institute on Drug Abuse
  • Kevin J. Frankowski, University of North Carolina at Chapel Hill
  • Kevin J. Frankowski, University of Kansas
  • David R. Sibley, National Institutes of Health
Abstract
To identify novel D3 dopamine receptor (D3R) agonists, we conducted a high-throughput screen using a β-arrestin recruitment assay. Counterscreening of the hit compounds provided an assessment of their selectivity, efficacy, and potency. The most promising scaffold was optimized through medicinal chemistry resulting in enhanced potency and selectivity. The optimized compound, ML417 (20), potently promotes D3R-mediated β-arrestin translocation, G protein activation, and ERK1/2 phosphorylation (pERK) while lacking activity at other dopamine receptors. Screening of ML417 against multiple G protein-coupled receptors revealed exceptional global selectivity. Molecular modeling suggests that ML417 interacts with the D3R in a unique manner, possibly explaining its remarkable selectivity. ML417 was also found to protect against neurodegeneration of dopaminergic neurons derived from iPSCs. Together with promising pharmacokinetics and toxicology profiles, these results suggest that ML417 is a novel and uniquely selective D3R agonist that may serve as both a research tool and a therapeutic lead for the treatment of neuropsychiatric disorders.
Disciplines
Publication Date
April 28, 2020
DOI
10.1021/ACS.JMEDCHEM.0C00424
Citation Information
Amy E. Moritz, R. Benjamin Free, Warren S. Weiner, Emmanuel O. Akano, et al.. "Discovery, Optimization, and Characterization of ML417: A Novel and Highly Selective D3 Dopamine Receptor Agonist." Journal of Medicinal Chemistry Vol. 63 Iss. 10 (2020) p. 5526 - 5567
Available at: http://works.bepress.com/thomas-keck/19/