Three-dimensional homology models of human MT1 and MT2 melatonin receptors were built with the aim to investigate the structure-activity relationships (SARs) of MT2 selective antagonists. A common interaction pattern was proposed for a series of structurally different MT2 selective antagonists, which were positioned within the binding site by docking and simulated annealing. The proposed antagonist binding mode to the MT2 receptor is characterized by the accommodation of the out-of-plane substituents in a hydrophobic pocket, which resulted as being fundamental for the explanation of the antagonist behavior and the MT2 receptor selectivity. Moreover, to assess the ability of the MT2 receptor model to reproduce the SARs of MT2 antagon...
Studies of the physiological actions of melatonin have been hindered by the lack of specific, potent...
A novel series of melatonin receptor ligands was discovered by opening the cyclic scaffolds of known...
A novel series of melatonin receptor ligands was discovered by opening the cyclic scaffolds of known...
Three-dimensional homology models of human MT1 and MT2 melatonin receptors were built with the aim ...
Three-dimensional homology models of human MT1 and MT2 melatonin receptors were built with the aim ...
Melatonin exerts many of its actions through the activation of two G protein-coupled receptors (GPC...
The three-dimensional quantitative structure-activity relationship comparative molecular field analy...
The three-dimensional quantitative structure-activity relationship comparative molecular field analy...
Molecular superposition models guided the design of novel melatonin receptor ligands characterized b...
Several indole analogues of melatonin (MLT) were obtained by moving the MLT side chain from C(3) to ...
The human MT1 and MT2 melatonin receptors1,2 are G-protein-coupled receptors (GPCRs) that help to re...
A novel series of melatonin receptor ligands, characterized by a N-(substituted-anilinoethyl)amido s...
This work reports the design and synthesis of novel alkylamides, characterized by a dibenzo- [a,d]c...
Studies of the physiological actions of melatonin have been hindered by the lack of specific, potent...
A novel series of melatonin receptor ligands was discovered by opening the cyclic scaffolds of known...
A novel series of melatonin receptor ligands was discovered by opening the cyclic scaffolds of known...
Three-dimensional homology models of human MT1 and MT2 melatonin receptors were built with the aim ...
Three-dimensional homology models of human MT1 and MT2 melatonin receptors were built with the aim ...
Melatonin exerts many of its actions through the activation of two G protein-coupled receptors (GPC...
The three-dimensional quantitative structure-activity relationship comparative molecular field analy...
The three-dimensional quantitative structure-activity relationship comparative molecular field analy...
Molecular superposition models guided the design of novel melatonin receptor ligands characterized b...
Several indole analogues of melatonin (MLT) were obtained by moving the MLT side chain from C(3) to ...
The human MT1 and MT2 melatonin receptors1,2 are G-protein-coupled receptors (GPCRs) that help to re...
A novel series of melatonin receptor ligands, characterized by a N-(substituted-anilinoethyl)amido s...
This work reports the design and synthesis of novel alkylamides, characterized by a dibenzo- [a,d]c...
Studies of the physiological actions of melatonin have been hindered by the lack of specific, potent...
A novel series of melatonin receptor ligands was discovered by opening the cyclic scaffolds of known...
A novel series of melatonin receptor ligands was discovered by opening the cyclic scaffolds of known...