Literature DB >> 11249125

Molecular modeling and QSAR analysis of the interaction of flavone derivatives with the benzodiazepine binding site of the GABA(A) receptor complex.

M Marder1, G Estiú, L B Blanch, H Viola, C Wasowski, J H Medina, A C Paladini.   

Abstract

A large number of structurally different classes of ligands, many of them sharing the main characteristics of the benzodiazepine (BDZ) nucleus, are active in the modulation of anxiety, sedation, convulsion, myorelaxation, hypnotic and amnesic states in mammals. These compounds have high affinity for the benzodiazepine binding site (BDZ-bs) of the GABA(A) receptor complex. Since 1989 onwards our laboratories established that some natural flavonoids were ligands for the BDZ-bs which exhibit medium to high affinity in vitro and anxiolytic activity in vivo. Further research resulted in the production of synthetic flavonoid derivatives with increased biochemical and pharmacological activities. The currently accepted receptor/pharmacophore model of the BDZ-bs (Zhang, W.; Koeler, K. F.; Zhang, P.; Cook, J. M. Drug Des. Dev. 1995, 12, 193) accounts for the general requirements that should be met by this receptor for ligand recognition. In this paper we present a model pharmacophore which defines the characteristics for a ligand to be able to interact and bind to a flavone site, in the GABA(A) receptor. closely related to the BDZ-bs. A model of a flavone binding site has already been described (Dekermendjian, K.; Kahnberg, P.; Witt, M. R.; Sterner, O.; Nielsen, M.; Liljerfors, T. J. Med. Chem. 1999, 42, 4343). However, this alternative model is based only on graphic superposition techniques using as template a non-BDZ agonist. In this investigation all the natural and synthetic flavonoids found to be ligands for the BDZ-bs have been compared with the classical BDZ diazepam. A QSAR regression analysis of the parameters that describe the interaction demonstrates the relevance of the electronic effects for the ligand binding, and shows that they are associated with the negatively charged oxygen atom of the carbonyl group of the flavonoids and with the nature of the substituent in position 3'.

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Year:  2001        PMID: 11249125     DOI: 10.1016/s0968-0896(00)00250-9

Source DB:  PubMed          Journal:  Bioorg Med Chem        ISSN: 0968-0896            Impact factor:   3.641


  11 in total

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2.  Modulation of ionotropic GABA receptors by 6-methoxyflavanone and 6-methoxyflavone.

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4.  A two step synthesis of BzR/GABAergic active flavones via a Wacker-related oxidation.

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Review 5.  Flavonoid modulation of GABA(A) receptors.

Authors:  Jane R Hanrahan; Mary Chebib; Graham A R Johnston
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6.  The flavone hispidulin, a benzodiazepine receptor ligand with positive allosteric properties, traverses the blood-brain barrier and exhibits anticonvulsive effects.

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7.  Docking of 1,4-benzodiazepines in the alpha1/gamma2 GABA(A) receptor modulator site.

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8.  The GABAA-Benzodiazepine Receptor Antagonist Flumazenil Abolishes the Anxiolytic Effects of the Active Constituents of Crocus sativus L. Crocins in Rats.

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9.  Saffron for the Management of Premenstrual Dysphoric Disorder: A Randomized Controlled Trial.

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Review 10.  Flavonoids as GABAA receptor ligands: the whole story?

Authors:  Cristina Wasowski; Mariel Marder
Journal:  J Exp Pharmacol       Date:  2012-02-23
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