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A Review of the Updated Pharmacophore for the Alpha 5 GABA(A) Benzodiazepine Receptor Model. | LitMetric

AI Article Synopsis

  • An updated pharmacophore model for the α5-BzR/GABA(A) subtype has been developed based on new subtype-selective ligands and recent research in ligand synthesis, behavior, and molecular modeling.
  • The study highlights the synthesis of compounds like α5-selective inverse agonist PWZ-029, which improves cognitive function in rodents and primates, and the chiral positive allosteric modulator SH-053-2'F-R-CH3, which counteracts negative effects in schizophrenia models and reduces airway constriction.
  • The updated model provides insights into the structural interactions of ligands within the α5-binding pocket, enhancing understanding of how various ligands (agonists, antagonists, or inverse agonists) interact

Article Abstract

An updated model of the GABA(A) benzodiazepine receptor pharmacophore of the α5-BzR/GABA(A) subtype has been constructed prompted by the synthesis of subtype selective ligands in light of the recent developments in both ligand synthesis, behavioral studies, and molecular modeling studies of the binding site itself. A number of BzR/GABA(A) α5 subtype selective compounds were synthesized, notably α5-subtype selective inverse agonist PWZ-029 (1) which is active in enhancing cognition in both rodents and primates. In addition, a chiral positive allosteric modulator (PAM), SH-053-2'F-R-CH3 (2), has been shown to reverse the deleterious effects in the MAM-model of schizophrenia as well as alleviate constriction in airway smooth muscle. Presented here is an updated model of the pharmacophore for α5β2γ2 Bz/GABA(A) receptors, including a rendering of PWZ-029 docked within the α5-binding pocket showing specific interactions of the molecule with the receptor. Differences in the included volume as compared to α1β2γ2, α2β2γ2, and α3β2γ2 will be illustrated for clarity. These new models enhance the ability to understand structural characteristics of ligands which act as agonists, antagonists, or inverse agonists at the Bz BS of GABA(A) receptors.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4657098PMC
http://dx.doi.org/10.1155/2015/430248DOI Listing

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