Literature DB >> 12036354

Novel class of potent 4-arylalkyl substituted 3-isoxazolol GABA(A) antagonists: synthesis, pharmacology, and molecular modeling.

Bente Frølund1, Anne T Jørgensen, Lena Tagmose, Tine B Stensbøl, Henrik T Vestergaard, Christine Engblom, Uffe Kristiansen, Connie Sanchez, Povl Krogsgaard-Larsen, Tommy Liljefors.   

Abstract

A number of analogues of the low-efficacy partial GABA(A) agonist 5-(4-piperidyl)-3-isoxazolol (4-PIOL, 5), in which the 4-position of the 3-isoxazolol ring was substituted by different groups, were synthesized and tested as GABA(A) receptor ligands. Substituents of different size and structural flexibility such as alkyl, phenylalkyl, diphenylalkyl, and naphthylalkyl were explored. Pharmacological characterization of the synthesized compounds was carried out using receptor binding assays and by electrophysiological experiments using whole-cell patch-clamp techniques. Whereas none of these compounds significantly affected GABA(B) receptor sites or GABA uptake, they did show affinity for the GABA(A) receptor site. While alkyl or benzyl substitution, compounds 7a-h, provided receptor affinities comparable with that of 5 (K(i) = 9.1 microM), diphenylalkyl and naphthylalkyl substitution, as in compounds 7m-t, resulted in a dramatic increase in affinity relative to 5. The 3,3-diphenylpropyl and the 2-naphthylmethyl analogues, compounds 7s and 7m, respectively, showed the highest affinities of the series (K(i) = 0.074 microM and K(i) = 0.049 microM). In whole-cell patch-clamp recordings from cultured cerebral cortical neurons, all of the tested compounds were able to inhibit the effect of the specific GABA(A) agonist isoguvacine (1), compounds 7m and 7s showing antagonist potency (IC(50) = 0.37 microM and IC(50) = 0.02 microM) comparable with or markedly higher than that of the standard GABA(A) antagonist 4 (IC(50) = 0.24 microM). Highly potent convulsant activity was demonstrated in mice with compounds 7m (ED(50) = 0.024 micromol/kg) and 7s (ED(50) = 0.21 micromol/kg) after intracerebroventricular administration, whereas no effects were found after subcutaneous administration. According to a previously proposed pharmacophore model for GABA(A) receptor agonists, a receptor cavity in the vicinity of the 4-position of the 3-isoxazolol ring in 4-PIOL exists. A molecular modeling study, based on compounds 7o,m,l,q,s, was performed to explore the dimensions and other properties of the receptor cavity. This study demonstrates the importance of the arylalkyl substituents in 7m and 7s and the considerable dimensions of this proposed receptor cavity.

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Year:  2002        PMID: 12036354     DOI: 10.1021/jm020027o

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


  13 in total

1.  Activation of single heteromeric GABA(A) receptor ion channels by full and partial agonists.

Authors:  Martin Mortensen; Uffe Kristiansen; Bjarke Ebert; Bente Frølund; Povl Krogsgaard-Larsen; Trevor G Smart
Journal:  J Physiol       Date:  2004-02-27       Impact factor: 5.182

2.  Solution phase synthesis of a diverse library of highly substituted isoxazoles.

Authors:  Jesse P Waldo; Saurabh Mehta; Benjamin Neuenswander; Gerald H Lushington; Richard C Larock
Journal:  J Comb Chem       Date:  2008-08-01

Review 3.  Probing the orthosteric binding site of GABAA receptors with heterocyclic GABA carboxylic acid bioisosteres.

Authors:  Jette G Petersen; Rikke Bergmann; Povl Krogsgaard-Larsen; Thomas Balle; Bente Frølund
Journal:  Neurochem Res       Date:  2013-12-21       Impact factor: 3.996

4.  The GABAA antagonist DPP-4-PIOL selectively antagonises tonic over phasic GABAergic currents in dentate gyrus granule cells.

Authors:  Kim Boddum; Bente Frølund; Uffe Kristiansen
Journal:  Neurochem Res       Date:  2014-08-08       Impact factor: 3.996

5.  The synthesis of highly substituted isoxazoles by electrophilic cyclization: an efficient synthesis of valdecoxib.

Authors:  Jesse P Waldo; Richard C Larock
Journal:  J Org Chem       Date:  2007-11-03       Impact factor: 4.354

Review 6.  Carboxylic acid (bio)isosteres in drug design.

Authors:  Carlo Ballatore; Donna M Huryn; Amos B Smith
Journal:  ChemMedChem       Date:  2013-01-29       Impact factor: 3.466

7.  Synthesis of GABAA receptor agonists and evaluation of their alpha-subunit selectivity and orientation in the GABA binding site.

Authors:  Michaela Jansen; Holger Rabe; Axelle Strehle; Sandra Dieler; Fabian Debus; Gerd Dannhardt; Myles H Akabas; Hartmut Lüddens
Journal:  J Med Chem       Date:  2008-07-24       Impact factor: 7.446

8.  Hydroxy-1,2,5-oxadiazolyl moiety as bioisoster of the carboxy function. A computational study on gamma-aminobutyric acid (GABA) related compounds.

Authors:  Paolo Tosco; Marco L Lolli
Journal:  J Mol Model       Date:  2008-02-05       Impact factor: 1.810

9.  New insights into the GABA(A) receptor structure and orthosteric ligand binding: receptor modeling guided by experimental data.

Authors:  Tommy Sander; Bente Frølund; Anne Techau Bruun; Ivaylo Ivanov; James Andrew McCammon; Thomas Balle
Journal:  Proteins       Date:  2011-03-01

Review 10.  Rational approaches for the design of various GABA modulators and their clinical progression.

Authors:  Kavita Bhagat; Jatinder V Singh; Piyusha P Pagare; Nitish Kumar; Anchal Sharma; Gurinder Kaur; Nihar Kinarivala; Srinivasa Gandu; Harbinder Singh; Sahil Sharma; Preet Mohinder S Bedi
Journal:  Mol Divers       Date:  2020-03-13       Impact factor: 2.943

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