Literature DB >> 3027337

Synthesis and structure-activity relationships of a series of aminopyridazine derivatives of gamma-aminobutyric acid acting as selective GABA-A antagonists.

C G Wermuth, J J Bourguignon, G Schlewer, J P Gies, A Schoenfelder, A Melikian, M J Bouchet, D Chantreux, J C Molimard, M Heaulme.   

Abstract

We have recently shown that an arylaminopyridazine derivative of GABA, SR 95103 [2-(3-carboxypropyl)-3-amino-4-methyl-6-phenylpyridazinium chloride], is a selective and competitive GABA-A receptor antagonist. In order to further explore the structural requirements for GABA receptor affinity, we synthesized a series of 38 compounds by attaching various pyridazinic structures to GABA or GABA-like side chains. Most of the compounds displaced [3H]GABA from rat brain membranes. All the active compounds antagonized the GABA-elicited enhancement of [3H]diazepam binding, strongly suggesting that all these compounds are GABA-A receptor antagonists. None of the compounds that displaced [3H]GABA from rat brain membranes interacted with other GABA recognition sites (GABA-B receptor, GABA uptake binding site, glutamate decarboxylase, GABA-transaminase). They did not interact with the Cl- ionophore associated with the GABA-A receptor and did not interact with the benzodiazepine, strychnine, and glutamate binding sites. Thus, these compounds appear to be specific GABA-A receptor antagonists. In terms of structure-activity, it can be concluded that a GABA moiety bearing a positive charge is necessary for optimal GABA-A receptor recognition. Additional binding sites are tolerated only if they are part of a charge-delocalized amidinic or guanidinic system. If this delocalization is achieved by linking a butyric acid moiety to the N(2) nitrogen of a 3-aminopyridazine, GABA-antagonistic character is produced. The highest potency (approximately equal to 250 times bicuculline) was observed when an aromatic pi system, bearing electron-donating substituents, was present on the 6-position of the pyridazine ring.

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Year:  1987        PMID: 3027337     DOI: 10.1021/jm00385a003

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


  5 in total

1.  Use of 4-bromo pyridazine 3,6-dione for building 3-amino pyridazine libraries.

Authors:  Martine Schmitt; João X de Araújo-Júnior; Said Oumouch; Jean-Jacques Bourguignon
Journal:  Mol Divers       Date:  2006-07-29       Impact factor: 2.943

2.  Distinct roles of GABA(A) and GABA(B) receptors in balancing and terminating persistent cortical activity.

Authors:  Edward O Mann; Michael M Kohl; Ole Paulsen
Journal:  J Neurosci       Date:  2009-06-10       Impact factor: 6.167

3.  Ureido Functionalization through Amine-Urea Transamidation under Mild Reaction Conditions.

Authors:  Natalia Guerrero-Alburquerque; Shanyu Zhao; Daniel Rentsch; Matthias M Koebel; Marco Lattuada; Wim J Malfait
Journal:  Polymers (Basel)       Date:  2021-05-14       Impact factor: 4.329

4.  5-(Indol-2-yl)pyrazolo[3,4-b]pyridines as a New Family of TASK-3 Channel Blockers: A Pharmacophore-Based Regioselective Synthesis.

Authors:  David Ramírez; Melissa Mejia-Gutierrez; Braulio Insuasty; Susanne Rinné; Aytug K Kiper; Magdalena Platzk; Thomas Müller; Niels Decher; Jairo Quiroga; Pedro De-la-Torre; Wendy González
Journal:  Molecules       Date:  2021-06-25       Impact factor: 4.411

5.  Photo-antagonism of the GABAA receptor.

Authors:  Martin Mortensen; Favaad Iqbal; Arun P Pandurangan; Saad Hannan; Rosemary Huckvale; Maya Topf; James R Baker; Trevor G Smart
Journal:  Nat Commun       Date:  2014-07-29       Impact factor: 14.919

  5 in total

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