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Harel Weinstein

4 papers in the library · 327 citations · publishing 1977-2003

Papers

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Molecular basis of partial agonism: orientation of indoleamine ligands in the binding pocket of the human serotonin 5-HT2A receptor determines relative efficacy.

Molecular Pharmacology 2003 Barbara J. Ebersole, Irache Visiers, Harel Weinstein et al. 72 citations

Based on experiment and computational simulation, we present a structural explanation for the differing efficacies of indole agonists at the human serotonin 5-HT2A receptor (5HT2AR). We find that serotonin [5-hydroxytryptamine (5-HT)] forms hydrogen-bonds with Ser3.36 in helix 3 and Ser5.46 in helix 5. Disruption of these hydrogen bonds by methyl-substitution of the cationic primary amine or of...

Mapping the binding site pocket of the serotonin 5-Hydroxytryptamine2A receptor. Ser3.36(159) provides a second interaction site for the protonated amine of serotonin but not of lysergic acid diethylamide or bufotenin.

The Journal of biological chemistry June 21, 1996 N Almaula, Barbara J. Ebersole, D Zhang et al. 147 citations

Like other amine neurotransmitters that activate G-protein-coupled receptors, 5-hydroxytryptamine (5-HT) binds to the 5-HT2A receptor through the interaction of its cationic primary amino group with the conserved Asp3.32(155) in transmembrane helix 3. Computational experiments with a 5-HT2A receptor model suggest that the same functional group of 5-hydroxytryptamine also forms a hydrogen bond...

Molecular determinants for binding of methylenedioxytryptamines at 5-HT/LSD receptors

International Journal of Quantum Chemistry March 5, 1981 Patricia H. Reggio, Harel Weinstein, Roman Osman et al. 17 citations

In investigations of the molecular determinants for the recognition of drugs by a serotonin (5-HT) receptor in the brain, the commonality in the reactivity patterns of 5-HT congeners has been identified. On this basis a mechanistic hypothesis is proposed to explain the rank order of the affinity of drugs that bind to the receptor shared by 5-HT and LSD (the 5-HT/LSD receptor). This hypothesis...

Antagonism of histamine-activated adenylate cyclase in brain by D-lysergic acid diethylamide.

Proceedings of the National Academy of Sciences December 1, 1977 J P Green, C L Johnson, Harel Weinstein et al. 91 citations

D-Lysergic acid diethylamide and D-2-bromolysergic acid diethylamide are competitive antagonists of the histamine activation of adenylate cyclase [ATP pyrophosphate-lyase (cyclizing); E.C. 4.6.1.1] in broken cell preparations of the hippocampus and cortex of guinea pig brain. The adenylate cyclase is linked to the histamine H2-receptor. Both D-lysergic acid diethylamide and D-2-bromolysergic...