Literature DB >> 10633039

Pharmacophore/receptor models for GABA(A)/BzR subtypes (alpha1beta3gamma2, alpha5beta3gamma2, and alpha6beta3gamma2) via a comprehensive ligand-mapping approach.

Q Huang1, X He, C Ma, R Liu, S Yu, C A Dayer, G R Wenger, R McKernan, J M Cook.   

Abstract

Pharmacophore/receptor models for three recombinant GABA(A)/BzR subtypes (alpha1beta3gamma2, alpha5beta3gamma2, and alpha6beta3gamma2) have been established via an SAR ligand-mapping approach. This study was based on the affinities of 151 BzR ligands at five distinct (alpha1-3,5,6beta3gamma2) recombinant GABA(A)/BzR receptor subtypes from at least nine different structural families. Examination of the included volumes of the alpha1-, alpha5-, and alpha6-containing subtypes indicated that region L(2) for the alpha5-containing subtype appeared to be larger in size than the analogous region of the other receptor subtypes. Region L(Di), in contrast, appeared to be larger in the alpha1 subtype than in the other two subtypes. Moreover, region L(3) in the alpha6 subtype is either very small or nonexistent in this diazepam-insensitive subtype (see Figure 16 for details) as compared to the other subtypes. Use of the pharmacophore/receptor models for these subtypes has resulted in the design of novel BzR ligands (see 27) selective for the alpha5beta3gamma2 receptor subtype. alpha5-Selective ligand 27 when injected directly into the hippocampus did enhance memory in one paradigm (Bailey et al., unpublished observations); however, systemic administration of either 9 or 27 into animals did not provide an observable enhancement. This result is in complete agreement with the observation of Liu (1996). It has been shown (Liu, 1996; Wisden et al., 1992) that in the central nervous system of the rat (as well as monkeys and pigeons) there are several native subtypes of the GABA(A) receptor which exhibit different functions, regional distributions, and neuronal locations. Although 27 binds more potently at alpha5beta3gamma2 receptor subtypes and is clearly an inverse agonist (Liu et al., 1996; Liu, 1996), it is possible that this ligand acts as an agonist at one or more subtypes. Liu (1996) clearly showed that a number of imidazobenzodiazepines were negative modulators at one subtype and agonists at another. Therefore, selectivity for a particular subtype at this point is not sufficient to rule out some physiological effect at other GABA(A)/BzR subtypes. The inability of 27 to potentiate memory when given systemically is again in support of this hypothesis, especially since alpha1beta2gamma2 subtypes are distributed throughout the brain (Wisden et al., 1992). A drug delivered systemically is far more likely to interact with all subtypes than one delivered to a specific brain region. This observation (systemic vs intrahippocampal) provides further support for the design of more subtype-specific ligands at the BzR to accurately define their pharmacology, one key to the design of new drugs with fewer side effects.

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Year:  2000        PMID: 10633039     DOI: 10.1021/jm990341r

Source DB:  PubMed          Journal:  J Med Chem        ISSN: 0022-2623            Impact factor:   7.446


  46 in total

1.  The GABA(A) receptor as a target for photochromic molecules.

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2.  Digital Image Analysis for DETCHIP® Code Determination.

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Journal:  Signal Image Process       Date:  2012-08

3.  α5GABAA subunit-containing receptors and sweetened alcohol cue-induced reinstatement and active sweetened alcohol self-administration in male rats.

Authors:  Cassie M Chandler; Jaren Reeves-Darby; Sherman A Jones; J Abigail McDonald; Guanguan Li; Md T Rahman; James M Cook; Donna M Platt
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4.  The Positive Allosteric Modulator of α2/3-Containing GABAA Receptors, KRM-II-81, Is Active in Pharmaco-Resistant Models of Epilepsy and Reduces Hyperexcitability after Traumatic Brain Injury.

Authors:  Jeffrey M Witkin; Guanguan Li; Lalit K Golani; Wenhui Xiong; Jodi L Smith; Xingjie Ping; Farjana Rashid; Rajwana Jahan; Rok Cerne; James M Cook; Xiaoming Jin
Journal:  J Pharmacol Exp Ther       Date:  2019-11-06       Impact factor: 4.030

5.  Little evidence of a role for the α1GABAA subunit-containing receptor in a rhesus monkey model of alcohol drinking.

Authors:  Eileen K Sawyer; Casey Moran; Madelynn H Sirbu; Melissa Szafir; Michael Van Linn; Ojas Namjoshi; V V N Phani Babu Tiruveedhula; James M Cook; Donna M Platt
Journal:  Alcohol Clin Exp Res       Date:  2013-12-13       Impact factor: 3.455

6.  Evidence That Sedative Effects of Benzodiazepines Involve Unexpected GABAA Receptor Subtypes: Quantitative Observation Studies in Rhesus Monkeys.

Authors:  Angela N Duke; Zhiqiang Meng; Donna M Platt; John R Atack; Gerard R Dawson; David S Reynolds; V V N Phani Babu Tiruveedhula; Guanguan Li; Michael Rajesh Stephen; Werner Sieghart; James M Cook; James K Rowlett
Journal:  J Pharmacol Exp Ther       Date:  2018-05-02       Impact factor: 4.030

Review 7.  Classics in chemical neuroscience: diazepam (valium).

Authors:  Nicholas E Calcaterra; James C Barrow
Journal:  ACS Chem Neurosci       Date:  2014-02-27       Impact factor: 4.418

8.  Benzodiazepines and heightened aggressive behavior in rats: reduction by GABA(A)/alpha(1) receptor antagonists.

Authors:  Shannon L Gourley; Joseph F Debold; Wenyuan Yin; James Cook; Klaus A Miczek
Journal:  Psychopharmacology (Berl)       Date:  2004-08-17       Impact factor: 4.530

9.  Antagonism of triazolam self-administration in rhesus monkeys responding under a progressive-ratio schedule: In vivo apparent pA2 analysis.

Authors:  Bradford D Fischer; Donna M Platt; Sundari K Rallapalli; Ojas A Namjoshi; James M Cook; James K Rowlett
Journal:  Drug Alcohol Depend       Date:  2015-10-30       Impact factor: 4.492

10.  The alpha1 subunit of the GABA(A) receptor modulates fear learning and plasticity in the lateral amygdala.

Authors:  Brian J Wiltgen; Bill P Godsil; Zechun Peng; Faysal Saab; Harry L June; Michael L Van Linn; James M Cook; Carolyn R Houser; Tom J O'Dell; Gregg E Homanics; Michael S Fanselow
Journal:  Front Behav Neurosci       Date:  2009-10-20       Impact factor: 3.558

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