Artículo
New ATP-competitive inhibitors of E. coli GyrB obtained from the mapping of the hydrophobic floor at the binding site: synthesis and biological evaluation
Gutierrez, Lucas; Perolja, Peter; Tosso, Rodrigo David
; Zidar, Nace; Kikelj, Danijel; Enriz, Ricardo Daniel
; Zidar, Nace; Kikelj, Danijel; Enriz, Ricardo Daniel
Fecha de publicación:
08/2024
Editorial:
Royal Society of Chemistry
Revista:
RSC Medicinal Chemistry
ISSN:
2632-8682
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
We mapped the hydrophobic floor, an interesting subsite at the active site of DNA gyrase B (GyrB) from E. coli. We synthesized three new compounds with pendant groups targeting the hydrophobic floor and evaluated their inhibitory activities on DNA gyrase. A new benzothiazole derivative with a benzyl substituent at position 3 of the benzothiazole ring exhibited strong inhibitory activity against E. coli DNA gyrase (IC50 = 19 ± 3 nM). An exhaustive conformational study using potential energy surfaces (PESs) allowed us to map the new subsite evaluating all critical points on the surface and conformational interconversion pathways. We analyzed the molecular interactions using QTAIM calculations. Our data provide insights into the mechanism of action of these new ligands at the molecular level. Theoretical and experimental data suggest that new ligand optimization strategies should focus on strengthening interactions at the hydrophobic floor while preserving the binding mode of the main scaffold.
Palabras clave:
GYRASE B
,
POTENTIAL ENERGY SURFACES
,
QTAIM ANALYSIS
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Licencia
Identificadores
Colecciones
Articulos(IMIBIO-SL)
Articulos de INST. MULTIDICIPLINARIO DE INV. BIO. DE SAN LUIS
Articulos de INST. MULTIDICIPLINARIO DE INV. BIO. DE SAN LUIS
Citación
Gutierrez, Lucas; Perolja, Peter; Tosso, Rodrigo David; Zidar, Nace; Kikelj, Danijel; et al.; New ATP-competitive inhibitors of E. coli GyrB obtained from the mapping of the hydrophobic floor at the binding site: synthesis and biological evaluation; Royal Society of Chemistry; RSC Medicinal Chemistry; 15; 11; 8-2024; 3759-3777
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