Thiohydantoins and hydantoins derived from amino acids as potent urease inhibitors: Inhibitory activity and ligand-target interactions.

Priscila Goes Camargo, Marciéli Fabris, Matheus Yoshimitsu Tatsuta Nakamae, Breno Germano de Freitas Oliveira, Camilo Henrique da Silva Lima, Ângelo de Fátima, Marcelle de Lima Ferreira Bispo, Fernando Macedo

Journal: Chemico-biological interactions 2022;365():110045

PMID: 35853540

Abstract

We report the investigation of hydantoins and thiohydantoins derived from L and d-amino acids as inhibitors against the Canavalia ensiformis urease (CEU). The biochemical in vitro assay against CEU revealed a promising inhibitory potential for most thiohydantoins with six of them showing %I higher than the reference inhibitor thiourea (56.5%). In addition, thiohydantoin derived from l-valine, 1b, as well as the hydantoin 2d, derived from l-methionine, were identified as the most potent inhibitors with %I = 90.5 and 85.9 respectively. Enzyme kinetic studies demonstrated a mixed and uncompetitive inhibition profile for these compounds with K values of 0.42 mM for 1b and 0.99 mM for 2d. These kinetic parameters, obtained from traditional colorimetric assay, were strictly related to the K values measured spectroscopically by the Saturation Transfer Difference (STD) technique for the urease complex. STD was also used to evince the moieties of the ligands responsible for the binding with the enzyme. Molecular docking studies showed that the thiohydantoin and hydantoin rings can act as a pharmacophoric group due to their binding affinity by hydrogen bonding interactions with critical amino acid residues in the enzyme active and/or allosteric site. These findings agreed with the experimental alpha values, demonstrating that 1b has affinity by free enzyme, and 2d derivative, an uncompetitive inhibitor, has great binding affinity at the allosteric site. The results for the thiohydantoin 1a, derived from d-valine, demonstrated a drastic stereochemical influence on inhibition, kinetics, and binding parameters in comparison to its enantiomer 1b.

Copyright © 2022 Elsevier B.V. All rights reserved.

Address: Departament of Chemistry, Center of Exact Sciences, State University of Londrina, Londrina, PR, Brazil. Electronic address: [email protected].; Departament of Chemistry, Center of Exact Sciences, State University of Londrina, Londrina, PR, Brazil.; Departament of Chemistry Institute of Exact Sciences, Federal University of Minas Gerais, Belo Horizonte, MG, Brazil.; Chemistry Institute, Federal University of Rio de Janeiro, Rio de Janeiro, RJ, Brazil.; Departament of Chemistry, Center of Exact Sciences, State University of Londrina, Londrina, PR, Brazil. Electronic address: [email protected].
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