Binding modes of dihydroquinoxalinones in a homology model of bradykinin receptor 1.

Sookhee N Ha, Pat J Hey, Rick W Ransom, C Meacham Harrell, Kathryn L Murphy, Ray Chang, Tsing-Bau Chen, Dai-Shi Su, M Kristine Markowitz, Mark G Bock, Roger M Freidinger, Fred J Hess

Journal: Biochemical and biophysical research communications 2005;331(1):159-66

PMID: 15845373

Abstract

We report the first homology model of human bradykinin receptor B1 generated from the crystal structure of bovine rhodopsin as a template. Using an automated docking procedure, two B1 receptor antagonists of the dihydroquinoxalinone structural class were docked into the receptor model. Site-directed mutagenesis data of the amino acid residues in TM1, TM3, TM6, and TM7 were incorporated to place the compounds in the binding site of the homology model of the human B1 bradykinin receptor. The best pose in agreement with the mutation data was selected for detailed study of the receptor-antagonist interaction. To test the model, the calculated antagonist-receptor binding energy was correlated with the experimentally measured binding affinity (K(i)) for nine dihydroquinoxalinone analogs. The model was used to gain insight into the molecular mechanism for receptor function and to optimize the dihydroquinoxalinone analogs.

Address: Basic Chemistry, Merck Research Laboratories, P.O. Box 2000, Rahway, NJ 07065, USA. [email protected] <[email protected]>

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