Biofilm-dwelling cells endure adverse conditions, including oxidative imbalances. The NADH:quinone oxidoreductase enzyme WrbA has a crucial role in the mechanism of action of antibiofilm molecules such as ellagic and salicylic acids. This study aimed to exploit the potential of the WrbA scaffold as a valuable target for identifying antibiofilm compounds at non-lethal concentrations. A three-dimensional computational model, based on the published WrbA structure, was used to screen natural compounds from a virtual library of 800,000 compounds. Fisetin, morin, purpurogallin, NZ028, and NZ034, along with the reference compound ellagic acid, were selected. The antibiofilm effect of the molecules was tested at non-lethal concentrations evaluating the cell-adhesion of wild-type and WrbA-deprived Escherichia coli strains through fluorochrome-based microplate assays. It was shown that, except for NZ028, all of the selected molecules exhibited notable antibiofilm effects. Purpurogallin and NZ034 showed excellent antibiofilm performances at the lowest concentration of 0.5 μM, in line with ellagic acid. The observed loss of activity and the level of reactive oxygen species in the mutant strain, along with the correlation with terms contributing to the ligand-binding free energy on WrbA, strongly indicates the WrbA-dependency of purpurogallin and NZ034. Overall, the molecular target WrbA was successfully employed to identify active compounds at non-lethal concentrations, thus revealing, for the first time, the antibiofilm efficacy of purpurogallin and NZ034.

Unlocking the Antibiofilm Potential of Natural Compounds by Targeting the NADH:quinone Oxidoreductase WrbA / A. Ratti, E.M.A. Fassi, F. Forlani, M. Zangrossi, M. Mori, F. Cappitelli, G. Roda, S. Villa, F. Villa, G. Grazioso. - In: ANTIOXIDANTS. - ISSN 2076-3921. - 12:8(2023), pp. 1612.1-1612.17. [10.3390/antiox12081612]

Unlocking the Antibiofilm Potential of Natural Compounds by Targeting the NADH:quinone Oxidoreductase WrbA

A. Ratti
Primo
;
E.M.A. Fassi
Secondo
;
F. Forlani
;
M. Zangrossi;M. Mori;F. Cappitelli;G. Roda;S. Villa;F. Villa
;
G. Grazioso
Ultimo
2023

Abstract

Biofilm-dwelling cells endure adverse conditions, including oxidative imbalances. The NADH:quinone oxidoreductase enzyme WrbA has a crucial role in the mechanism of action of antibiofilm molecules such as ellagic and salicylic acids. This study aimed to exploit the potential of the WrbA scaffold as a valuable target for identifying antibiofilm compounds at non-lethal concentrations. A three-dimensional computational model, based on the published WrbA structure, was used to screen natural compounds from a virtual library of 800,000 compounds. Fisetin, morin, purpurogallin, NZ028, and NZ034, along with the reference compound ellagic acid, were selected. The antibiofilm effect of the molecules was tested at non-lethal concentrations evaluating the cell-adhesion of wild-type and WrbA-deprived Escherichia coli strains through fluorochrome-based microplate assays. It was shown that, except for NZ028, all of the selected molecules exhibited notable antibiofilm effects. Purpurogallin and NZ034 showed excellent antibiofilm performances at the lowest concentration of 0.5 μM, in line with ellagic acid. The observed loss of activity and the level of reactive oxygen species in the mutant strain, along with the correlation with terms contributing to the ligand-binding free energy on WrbA, strongly indicates the WrbA-dependency of purpurogallin and NZ034. Overall, the molecular target WrbA was successfully employed to identify active compounds at non-lethal concentrations, thus revealing, for the first time, the antibiofilm efficacy of purpurogallin and NZ034.
biofilm; WrbA; virtual screening; NADH:quinone oxidoreductase; antioxidant proteins; natural compounds; flavonoids; polyphenols;
Settore AGR/16 - Microbiologia Agraria
Settore CHIM/08 - Chimica Farmaceutica
Settore BIO/10 - Biochimica
   Sistema integrato di Ateneo per lo studio, il monitoraggio e il controllo delle infezioni, delle emergenze epidemiche e della resistenza ai farmaci antimicrobici (IDEA)Linea Strategica 7 - Risposta rapida alle infezioni batteriche e virali (IDEA)
   IDEA
   UNIVERSITA' DEGLI STUDI DI MILANO
2023
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/993948
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