TY - JOUR
T1 - N-Branched Tricyclic Guanidines as Novel Melanocortin-3 Receptor Agonists and Melanocortin-4 Receptor Antagonists
AU - Weirath, Nicholas A.
AU - Zajac, Jonathan W.P.
AU - Donow, Haley M.
AU - Lavoi, Travis M.
AU - Pinilla, Clemencia
AU - Santos, Radleigh G.
AU - Prajapati, Ritu
AU - Speth, Robert
AU - Ericson, Mark D.
AU - Sarupria, Sapna
AU - Giulianotti, Marcello A.
AU - Haskell-Luevano, Carrie
N1 - Publisher Copyright:
© 2025 American Chemical Society.
PY - 2025/2/13
Y1 - 2025/2/13
N2 - The melanocortin receptors are a class of centrally and peripherally expressed G protein-coupled receptors, of which the MC3R and MC4R subtypes are implicated in the regulation of appetite and energy homeostasis and can serve as potential therapeutic targets for disorders such as obesity and cachexia. An unbiased high-throughput mixture-based library screen was implemented to identify novel ligands with an emphasis on the identification of nanomolar-potent agonists of the mouse melanocortin-3 receptor. This screen yielded the discovery of an N-branched tricyclic guanidine scaffold (TPI2408) that contained three nanomolar potent mMC3R agonists and additional compounds that possessed antagonism for the mMC4R. The antagonist character of this scaffold library at the mMC4R was confirmed by a follow-up positional scanning antagonist screen. Additionally, molecular dynamics simulations herein provide mechanistic insight into the polypharmacological characteristics of melanocortin receptors. The disclosed materials have the potential to serve as important tools and SAR scaffolds in the study of melanocortin receptor function.
AB - The melanocortin receptors are a class of centrally and peripherally expressed G protein-coupled receptors, of which the MC3R and MC4R subtypes are implicated in the regulation of appetite and energy homeostasis and can serve as potential therapeutic targets for disorders such as obesity and cachexia. An unbiased high-throughput mixture-based library screen was implemented to identify novel ligands with an emphasis on the identification of nanomolar-potent agonists of the mouse melanocortin-3 receptor. This screen yielded the discovery of an N-branched tricyclic guanidine scaffold (TPI2408) that contained three nanomolar potent mMC3R agonists and additional compounds that possessed antagonism for the mMC4R. The antagonist character of this scaffold library at the mMC4R was confirmed by a follow-up positional scanning antagonist screen. Additionally, molecular dynamics simulations herein provide mechanistic insight into the polypharmacological characteristics of melanocortin receptors. The disclosed materials have the potential to serve as important tools and SAR scaffolds in the study of melanocortin receptor function.
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U2 - 10.1021/acs.jmedchem.4c01556
DO - 10.1021/acs.jmedchem.4c01556
M3 - Article
C2 - 39832483
AN - SCOPUS:85215630995
SN - 0022-2623
VL - 68
SP - 2504
EP - 2527
JO - Journal of medicinal chemistry
JF - Journal of medicinal chemistry
IS - 3
ER -