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New insights into the stereochemical requirements of the bradykinin B1 receptor antagonists binding
Affiliation:1. Laboratoire d''Agroressources et Génie des Procédés, Université Ibn Tofail, Faculté des Sciences, Département de Chimie, B.P. 133, Kénitra, Morocco;2. Laboratoire d''Ingénierie des Matériaux et d''Environnement: Modélisation et Application, Faculté des Sciences, Université Ibn Tofail, BP 133, Kénitra 14 000, Morocco;3. Laboratoire d''Optoélectronique et de Physico-chimie des Matériaux, Université Ibn Tofail, Faculté des Sciences, Département de Physique, B.P. 133, Kénitra, Morocco;4. Centre Régional des Métiers de l''Education et de la Formation (CRMEF), Avenue Allal Al Fassi, Madinat Al Irfane BP, 6210 Rabat, Morocco;5. LCAE-URAC 18, Faculty of Science, First Mohammed University, PO Box 717, 60 000 Oujda, Morocco
Abstract:Bradykinin (BK) is a nonapeptide involved in several pathophysiological conditions including among others, septic and haemorrhagic shock, anaphylaxis, arthritis, rhinitis, asthma, inflammatory bowel disease. Accordingly, BK antagonists have long been sought after for therapeutic intervention. Action of BK is mediated through two different G-protein coupled receptors known as B1 and B2. Although there are several B1 antagonists reported in literature, their pharmacological profile is not yet optimal so that new molecules need to be discovered. In the present work we have constructed an atomistic model of the B1 receptor and docked diverse available non-peptide antagonists in order to get a deeper insight into the structure-activity relationships involving binding to this receptor. The model was constructed by homology modeling using the chemokine CXC4 and bovine rhodopsin receptors as template. The model was further refined using molecular dynamics for 600 ns with the protein embedded in a POPC bilayer. From the refinement process we obtained an average structure that was used for docking studies using the Glide software. Antagonists selected for the docking studies include Compound 11, Compound 12, Chroman28, SSR240612, NPV-SAA164 and PS020990. The results of the docking study underline the role of specific receptor residues in ligand binding. The results of this study permitted to define a pharmacophore that describes the stereochemical requirements of antagonist binding, and can be used for the discovery of new compounds.
Keywords:Bradykinin B1 receptor  GPCR homology modeling  Pharmacophore development  B1 antagonist
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