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Coumarinyl pyranopyrimidines as new neuropeptide S receptor antagonists; design, synthesis, homology and molecular docking.
Batran, Rasha Z; Dawood, Dina H; El-Seginy, Samia A; Maher, Timothy J; Gugnani, Kuljeet S; Rondon-Ortiz, Alejandro N.
Afiliação
  • Batran RZ; Chemistry of Natural Compounds Department, Pharmaceutical Industries Research Division, National Research Center, 33 El Bohouth St. (former El Tahrir St.), Dokki, Giza, P.O. Box 12622, Egypt. Electronic address: rasha_batran@yahoo.com.
  • Dawood DH; Chemistry of Natural and Microbial Products Department, Pharmaceutical Industries Research Division, National Research Center, 33 El Bohouth St. (former El Tahrir St.), Dokki, Giza, P.O. Box 12622, Egypt.
  • El-Seginy SA; Green Chemistry Department, Chemical Industries Research Division, National Research Center, 33 El Bohouth St.(former El Tahrir St.), Dokki, Giza, P.O. Box 12622, Egypt.
  • Maher TJ; Department of Pharmaceutical Sciences, Massachusetts College of Pharmacy and Health Sciences, Boston, MA, USA.
  • Gugnani KS; Department of Pharmaceutical Sciences, Massachusetts College of Pharmacy and Health Sciences, Boston, MA, USA.
  • Rondon-Ortiz AN; Department of Pharmaceutical Sciences, Massachusetts College of Pharmacy and Health Sciences, Boston, MA, USA.
Bioorg Chem ; 75: 274-290, 2017 12.
Article em En | MEDLINE | ID: mdl-29055857
ABSTRACT
In this work, we described the design, synthesis and characterization of a new class of NPSR antagonists bearing the tetracyclic coumarinyl pyranopyrimidine scaffold incorporated with different acyclic and/or heterocyclic moieties. These compounds are highlighted in this study as never being used as NPSR antagonists before which provides a model for the discovery of new bioactive inhibitors that may hold potential for drug development towards anxiety, food, and addiction disorders. Synthetic and medicinal chemistry studies led to the identification of four potent antagonists, compounds 7d, 10, 12 and 13, which were able to significantly inhibit the stimulatory effect of NPS through counteracting the increased intracellular Ca2+ accumulation. The target compound 7d was the most active derivative behaving as a pure NPSR antagonist and displaying IC50 value of 2 µM. Homology model of NPSR was built based on bovine rhodopsin structure. Modeling studies were carried out to further rationalize the NPSR binding mode of the target compounds. Moreover, molecular dynamics simulation study was performed for compounds 7d, 10 and 12 which revealed the stability of the ligand-protein complex and the reliability of the docking studies.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Pirimidinas / Desenho de Fármacos / Receptores Acoplados a Proteínas G Limite: Humans Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Pirimidinas / Desenho de Fármacos / Receptores Acoplados a Proteínas G Limite: Humans Idioma: En Ano de publicação: 2017 Tipo de documento: Article