| Literature DB >> 31117514 |
Alessandro Giraudo1,2, Jacob Krall1, Francesco Bavo1,3, Birgitte Nielsen1, Kenneth T Kongstad1, Barbara Rolando2, Rossella De Blasio2, David E Gloriam1, Rebekka Löffler1, Louise Thiesen1, Kasper Harpsøe1, Karla Frydenvang1, Donatella Boschi2, Petrine Wellendorph1, Marco L Lolli2, Anders A Jensen1, Bente Frølund1.
Abstract
Given the heterogeneity within the γ-aminobutyric acid (GABA) receptor and transporter families, a detailed insight into the pharmacology is still relatively sparse. To enable studies of the physiological roles governed by specific receptor and transporter subtypes, a series of GABA analogues comprising five-membered nitrogen- and sulfur-containing heterocycles as amine bioisosteres were synthesized and pharmacologically characterized at native and selected recombinant GABAA receptors and GABA transporters. The dihydrothiazole and imidazoline analogues, 5-7, displayed moderate GAT activities and GABAA receptor binding affinities in the mid-nanomolar range ( Ki, 90-450 nM). Moreover, they exhibited full and equipotent agonist activity compared to GABA at GABAA-αβγ receptors but somewhat lower potency as partial agonists at the GABAA-ρ1 receptor. Stereoselectivity was observed for compounds 4 and 7 for the GABAA-αβγ receptors but not the GABAA-ρ1 receptor. This study illustrates how subtle differences in these novel amino GABA bioisosteres result in diverse pharmacological profiles in terms of selectivity and efficacy.Entities:
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Year: 2019 PMID: 31117514 DOI: 10.1021/acs.jmedchem.9b00026
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446