A closer look into NADPH oxidase inhibitors: Validation and insight into their mechanism of action

NADPH-oxidases (NOXs) purposefully produce reactive-oxygen-species (ROS) and are found in most kingdoms of life. The seven human NOXs are each characterized by a specific expression profile and a fine regulation to spatio-temporally tune ROS concentration in cells and tissues. One of the best known...

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Veröffentlicht in:Redox biology 2020-05, Vol.32, p.101466-101466, Article 101466
Hauptverfasser: Reis, Joana, Massari, Marta, Marchese, Sara, Ceccon, Marta, Aalbers, Friso S., Corana, Federica, Valente, Sergio, Mai, Antonello, Magnani, Francesca, Mattevi, Andrea
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Sprache:eng
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Zusammenfassung:NADPH-oxidases (NOXs) purposefully produce reactive-oxygen-species (ROS) and are found in most kingdoms of life. The seven human NOXs are each characterized by a specific expression profile and a fine regulation to spatio-temporally tune ROS concentration in cells and tissues. One of the best known roles for NOXs is in host protection against pathogens but ROS themselves are important second messengers involved in tissue regeneration and the modulation of pathways that induce and sustain cell proliferation. As such, NOXs are attractive pharmacological targets in immunomodulation, fibrosis and cancer. We have studied an extensive number of available NOX inhibitors, with the specific aim to identify bona fide ligands versus ROS-scavenging molecules. Accordingly, we have established a comprehensive platform of biochemical and biophysical assays. Most of the investigated small molecules revealed ROS-scavenging and/or assay-interfering properties to various degrees. A few compounds, however, were also demonstrated to directly engage one or more NOX enzymes. Diphenylene iodonium was found to react with the NOXs’ flavin and heme prosthetic groups to form stable adducts. We also discovered that two compounds, VAS2870 and VAS3947, inhibit NOXs through the covalent alkylation of a cysteine residue. Importantly, the amino acid involved in covalent binding was found to reside in the dehydrogenase domain, where the nicotinamide ring of NADPH is bound. This work can serve as a springboard to guide further development of bona fide ligands with either agonistic or antagonistic properties toward NOXs. [Display omitted] •NOX inhibition by twenty-four compounds was tested using multiple assays.•Most of the evaluated compounds displayed significant ROS scavenging and/or assay-interfering effects.•DPI is demonstrated to engage the heme and the flavin cofactors of NOXs.•VAS2870 and VAS3947 are covalent bona-fide NOX inhibitors.•A conserved active-site cysteine can be targeted for inhibition.
ISSN:2213-2317
2213-2317
DOI:10.1016/j.redox.2020.101466