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PMID: 11809925 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Exploring the unique pharmacology of a novel opioid receptor, ZFOR1, using molecular modeling and the 'message-address' concept.

Protein engineering ·Vol. 14 ·No. 12 ·2001-12-00 ·Pages 953-60

McFadyen IJ, Metzger TG, Paterlini MG, Ferguson DM

Abstract

Previous studies have probed the structural basis of ligand selectivity in the mu, delta and kappa opioid receptors through the application of molecular modeling techniques in concert with the 'message-address' concept. Here, this approach was used in an attempt to rationalize the unique pharmacological profile of a recently cloned novel opioid receptor, ZFOR1 (ZebraFish Opioid Receptor 1). Specifically, a model of the transmembrane domains of ZFOR1 was constructed and used to explore the binding modes of various prototypical opioid ligands. The results show that the 'message' portion of the binding pocket of ZFOR1 is highly conserved; hence, the binding modes of non-selective opioid ligands are well preserved. In contrast, a small number of variant residues at the extracellular end of the binding pocket, particularly Lys288 (VI:26) and Trp304 (VII:03), are shown to create adverse steric interactions with all delta and kappa selective ligands examined, thereby disrupting their binding modes. These results are consistent with, and serve as an explanation for, the observed pharmacology of this receptor, lending support to both the validity of the 'message-address' concept itself and to the use of molecular modeling approaches in its application.

MeSH Terms
Animals Binding Sites Ligands Models, Molecular Molecular Sequence Data Protein Structure, Tertiary Receptors, Opioid, delta/chemistry,drug effects,metabolism Sequence Analysis, Protein Zebrafish Zebrafish Proteins/chemistry,drug effects,metabolism
Chemicals
Ligands Receptors, Opioid, delta Zebrafish Proteins oprd1a protein, zebrafish
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
McFadyen I J
Department of Medicinal Chemistry, University of Minnesota, Minneapolis, MN 55414, USA.
Metzger T G
Paterlini M G
Ferguson D M
Article Info
Journal
Protein engineering
Abbr.
Protein Eng
ISSN
0269-2139
Published
2001-12-00
Pages
953-60
Language
English
Region
England
NLM ID
8801484
Subset
IM
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