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1.
PLoS One ; 8(10): e77460, 2013.
Article de Anglais | MEDLINE | ID: mdl-24146999

RÉSUMÉ

Cysteine proteases of the papain superfamily are present in nearly all eukaryotes. They play pivotal roles in the biology of parasites and inhibition of cysteine proteases is emerging as an important strategy to combat parasitic diseases such as sleeping sickness, Chagas' disease and leishmaniasis. Homology modeling of the mature Leishmania mexicana cysteine protease CPB2.8 suggested that it differs significantly from bovine cathepsin B and thus could be a good drug target. High throughput screening of a compound library against this enzyme and bovine cathepsin B in a counter assay identified four novel inhibitors, containing the warhead-types semicarbazone, thiosemicarbazone and triazine nitrile, that can be used as leads for antiparasite drug design. Covalent docking experiments confirmed the SARs of these lead compounds in an effort to understand the structural elements required for specific inhibition of CPB2.8. This study has provided starting points for the design of selective and highly potent inhibitors of L. mexicana cysteine protease CPB that may also have useful efficacy against other important cysteine proteases.


Sujet(s)
Cysteine proteases/composition chimique , Inhibiteurs de la cystéine protéinase/composition chimique , Leishmania mexicana/effets des médicaments et des substances chimiques , Nitriles/composition chimique , Semicarbazones/composition chimique , Thiosemicarbazones/composition chimique , Sites de fixation , Domaine catalytique , Cysteine proteases/métabolisme , Inhibiteurs de la cystéine protéinase/pharmacologie , Découverte de médicament , Tests de criblage à haut débit , Concentration inhibitrice 50 , Leishmania mexicana/enzymologie , Modèles moléculaires , Simulation de docking moléculaire , Structure moléculaire , Nitriles/pharmacologie , Liaison aux protéines , Protéines recombinantes/composition chimique , Protéines recombinantes/métabolisme , Semicarbazones/pharmacologie , Thiosemicarbazones/pharmacologie
4.
Eur J Biochem ; 271(18): 3704-14, 2004 Sep.
Article de Anglais | MEDLINE | ID: mdl-15355348

RÉSUMÉ

The CPB genes of the protozoan parasite Leishmania mexicana encode stage-regulated cathepsin L-like cysteine proteases that are important virulence factors and are in a tandem array of 19 genes. In this study, we have compared the substrate preferences of two CPB isoforms, CPB2.8 and CPB3, and a H84Y mutant of the latter enzyme, to analyse the roles played by the few amino acid differences between the isoenzymes in determining substrate specificity. CPB3 differs from CPB2.8 at just three residues (N60D, D61N and D64S) in the mature domain. The H84Y mutation mimics an additional change present in another isoenzyme, CPB18. The active recombinant CPB isoenzymes and mutant were produced using Escherichia coli and the S1-S3 and S1'-S3' subsite specificities determined using a series of fluorogenic peptide derivatives in which substitutions were made on positions P3 to P3' by natural amino acids. Carboxydipeptidase activities of CPB3 and H84Y were also observed using the peptide Abz-FRAK(Dnp)-OH and some of its analogues. The kinetic parameters of hydrolysis by CPB3, H84Y and CPB2.8 of the synthetic substrates indicates that the specificity of S3 to S3' subsites is influenced greatly by the modifications at amino acids 60, 61, 64 and 84. Particularly noteworthy was the large preference for Pro in the P2' position for the hydrolytic activity of CPB3, which may be relevant to a role in the activation mechanism of the L. mexicana CPBs.


Sujet(s)
Substitution d'acide aminé/génétique , Cysteine endopeptidases/génétique , Cysteine endopeptidases/métabolisme , Leishmania mexicana/enzymologie , Animaux , Sites de fixation , Technique de Western , Lignée cellulaire , Chromatographie en phase liquide à haute performance , Électrophorèse sur gel de polyacrylamide , Concentration en ions d'hydrogène , Isoenzymes/génétique , Isoenzymes/métabolisme , Cinétique , Modèles moléculaires , Mutagenèse dirigée , Protéines de protozoaire/génétique , Protéines de protozoaire/métabolisme , Protéines recombinantes/métabolisme , Relation structure-activité , Spécificité du substrat
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