Klára Konečná, Jaroslav Roh, Katarína Mikušová, Alexandr Hrabálek, Věra Klimešová, Petr Pávek, Kateřina Vávrová, Jana Korduláková, Jiřina Stolaříková, Ondřej Jand'ourek, Galina Karabanovich, Zuzana Konyariková, Stanislav Huszár, Hana Kočová Vlčková, Tomáš Kučera, Jan Korábečný, Ivona Pávková, Oto Pavliš, Karin Savková, Jan Dušek
Journal: Journal of medicinal chemistry 2020;62(17):8115-8139
PMID: 31393122
We report herein the discovery of 3,5-dinitrophenyl 1,2,4-triazoles with excellent and selective antimycobacterial activities against strains, including clinically isolated multidrug-resistant strains. Thorough structure-activity relationship studies of 3,5-dinitrophenyl-containing 1,2,4-triazoles and their trifluoromethyl analogues revealed the key role of the position of the 3,5-dinitrophenyl fragment in the antitubercular efficiency. Among the prepared compounds, the highest in vitro antimycobacterial activities against HRv and against seven clinically isolated multidrug-resistant strains of were found with S-substituted 4-alkyl-5-(3,5-dinitrophenyl)-4-1,2,4-triazole-3-thiols and their 3-nitro-5-(trifluoromethyl)phenyl analogues. The minimum inhibitory concentrations of these compounds reached 0.03 μM, which is superior to all the current first-line anti-tuberculosis drugs. Furthermore, almost all compounds with excellent antimycobacterial activities exhibited very low in vitro cytotoxicities against two proliferating mammalian cell lines. The docking study indicated that these compounds acted as the inhibitors of decaprenylphosphoryl-β-d-ribofuranose 2'-oxidase enzyme, which was experimentally confirmed by two independent radiolabeling experiments.
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