Three-Dimensional Quantitative Structure−Activity Relationship of Melatonin Receptor Ligands:  A Comparative Molecular Field Analysis Study

Journal of Medicinal Chemistry
1997.0

Abstract

A three-dimensional quantitative structure-activity relationship using the comparative molecular field analysis (CoMFA) paradigm applied to 57 melatonin receptor ligands belonging to diverse structural families was performed. The compounds studied which have been synthesized previously and reported to be active at chicken brain melatonin receptors were divided into a training set of 48 molecules and a test set of 9 molecules. As most of these compounds have a highly flexible ethylamido side chain, the alignments were based on the most sterically constrained molecule which contains a tricyclic phenalene structure. This tricyclic compound can adopt an axial and an equatorial conformation. Two different molecular superpositions representing possible positioning within the receptor site have been suggested previously. CoMFA was tentatively used to discriminate between alternate hypothetical biologically active conformation and between possible positionings. The best 3D quantitative structure-activity relationship model found yields significant cross-validated, conventional, and predictive r2 values equal to 0.798, 0.967, and 0.76, respectively, along with an average absolute error of prediction of 0.25 log units. These results suggest that the active conformation of the most flexible molecules including melatonin is in a folded form if we consider the spatial position of the ethylamido side chain relative to the aromatic ring.

Knowledge Graph

Similar Paper

Three-Dimensional Quantitative Structure−Activity Relationship of Melatonin Receptor Ligands:  A Comparative Molecular Field Analysis Study
Journal of Medicinal Chemistry 1997.0
Melatonin Receptor Ligands:  Synthesis of New Melatonin Derivatives and Comprehensive Comparative Molecular Field Analysis (CoMFA) Study
Journal of Medicinal Chemistry 1998.0
Pharmacophoric Search and 3D-QSAR Comparative Molecular Field Analysis Studies on Agonists of Melatonin Sheep Receptors
Journal of Medicinal Chemistry 1998.0
Three-Dimensional Quantitative Structure−Activity Relationship Studies on Selected MT<sub>1</sub>and MT<sub>2</sub>Melatonin Receptor Ligands:  Requirements for Subtype Selectivity and Intrinsic Activity Modulation
Journal of Medicinal Chemistry 2003.0
Three-Dimensional Quantitative Structure-Activity Relationships of Sulfonamide Endothelin Inhibitors
Journal of Medicinal Chemistry 1995.0
Conformationally Restrained Melatonin Analogues:  Synthesis, Binding Affinity for the Melatonin Receptor, Evaluation of the Biological Activity, and Molecular Modeling Study
Journal of Medicinal Chemistry 1997.0
Structure-Based Alignment and Comparative Molecular Field Analysis of Acetylcholinesterase Inhibitors
Journal of Medicinal Chemistry 1996.0
3D-QSAR(Three-Dimensional Quantitative Structure)-Activity Relationship Of Angiotensin-Converting Enzyme And Thermolysin Inhibitors. II. A Comparison Of CoMFA Models Incorporating Molecular Orbital Fields And Desolvation Free Energies Based On Active-Analog And Complementary-Receptor-Field Alignment Rules
Journal of Medicinal Chemistry 1993.0
CoMFA-Based Prediction of Agonist Affinities at Recombinant D1 vs D2 Dopamine Receptors
Journal of Medicinal Chemistry 1998.0
Comparative Molecular Field Analysis-Based Prediction of Drug Affinities at Recombinant D1A Dopamine Receptors
Journal of Medicinal Chemistry 1996.0