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Biomed Res Int ; 2014: 935039, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-25295281

RESUMO

Urease belongs to a family of highly conserved urea-hydrolyzing enzymes. A common feature of these enzymes is the presence of two Lewis acid nickel ions and reactive cysteine residue in the active sites. In the current study we examined a series of biscoumarins 1-10 for their mechanisms of inhibition with the nickel containing active sites of Jack bean and Bacillus pasteurii ureases. All these compounds competitively inhibited Jack bean urease through interaction with the nickel metallocentre, as deduced from Michaelis-Menten kinetics, UV-visible absorbance spectroscopic, and molecular docking simulation studies. Some of the compounds behaved differently in case of Bacillus pasteurii urease. We conducted the enzyme kinetics, UV-visible spectroscopy, and molecular docking results in terms of the known protein structure of the enzyme. We also evaluated possible molecular interpretations for the site of biscoumarins binding and found that phenyl ring is the major active pharmacophore. The excellent in vitro potency and selectivity profile of the several compounds described combined with their nontoxicity against the human cells and plants suggest that these compounds may represent a viable lead series for the treatment of urease associated problems.


Assuntos
Cumarínicos/química , Ureia/química , Urease/química , Bacillus/enzimologia , Sítios de Ligação , Canavalia/enzimologia , Domínio Catalítico , Cumarínicos/farmacologia , Cisteína/química , Humanos , Cinética , Ácidos de Lewis/química , Simulação de Acoplamento Molecular , Níquel/química , Ligação Proteica , Ureia/metabolismo , Urease/antagonistas & inibidores
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