Chagas disease affects millions of people in Latin America. This disease is caused by the protozoan parasite Trypanossoma cruzi. The cysteine protease cruzain is a key enzyme for the survival and propagation of this parasite lifecycle. Nitrile-based inhibitors are efficient inhibitors of cruzain that bind by forming a covalent bond with this enzyme. Here, three nitrile-based inhibitors dubbed Neq0409, Neq0410 and Neq0570 were synthesized, and the thermodynamic profile of the bimolecular interaction with cruzain was determined using isothermal titration calorimetry (ITC). The result suggests the inhibition process is enthalpy driven, with a detrimental contribution of entropy. In addition, we have used hybrid Quantum Mechanical/Molecular Mechanical (QM/MM) and Molecular Dynamics (MD) simulations to investigate the reaction mechanism of reversible covalent modification of cruzain by Neq0409, Neq0410 and Neq0570. The computed free energy profile shows that the nucleophilic attack of Cys25 on the carbon C1 of inhibitiors and the proton transfer from His162 to N1 of the dipeptidyl nitrile inhibitor take place in a single step. The calculated free energy of the inhibiton reaction is in agreement with covalent experimental binding. Altogether, the results reported here suggests that nitrile-based inhibitors are good candidates for the development of reversible covalent inhibitors of cruzain and other cysteine proteases.

Experimental study and computational modelling of cruzain cysteine protease inhibition by dipeptidyl nitriles / Dos Santos, Alberto Monteiro; Cianni, Lorenzo; De Vita, Daniela; Rosini, Fabiana; Leitão, Andrei; Laughton, Charles A; Lameira, Jerônimo; Montanari, Carlos A. - In: PHYSICAL CHEMISTRY CHEMICAL PHYSICS. - ISSN 1463-9076. - 20:37(2018), pp. 24317-24328. [10.1039/c8cp03320j]

Experimental study and computational modelling of cruzain cysteine protease inhibition by dipeptidyl nitriles

Cianni, Lorenzo;De Vita, Daniela;
2018

Abstract

Chagas disease affects millions of people in Latin America. This disease is caused by the protozoan parasite Trypanossoma cruzi. The cysteine protease cruzain is a key enzyme for the survival and propagation of this parasite lifecycle. Nitrile-based inhibitors are efficient inhibitors of cruzain that bind by forming a covalent bond with this enzyme. Here, three nitrile-based inhibitors dubbed Neq0409, Neq0410 and Neq0570 were synthesized, and the thermodynamic profile of the bimolecular interaction with cruzain was determined using isothermal titration calorimetry (ITC). The result suggests the inhibition process is enthalpy driven, with a detrimental contribution of entropy. In addition, we have used hybrid Quantum Mechanical/Molecular Mechanical (QM/MM) and Molecular Dynamics (MD) simulations to investigate the reaction mechanism of reversible covalent modification of cruzain by Neq0409, Neq0410 and Neq0570. The computed free energy profile shows that the nucleophilic attack of Cys25 on the carbon C1 of inhibitiors and the proton transfer from His162 to N1 of the dipeptidyl nitrile inhibitor take place in a single step. The calculated free energy of the inhibiton reaction is in agreement with covalent experimental binding. Altogether, the results reported here suggests that nitrile-based inhibitors are good candidates for the development of reversible covalent inhibitors of cruzain and other cysteine proteases.
2018
Cysteine Endopeptidases; Cysteine Proteases; Cysteine Proteinase Inhibitors; Drug Design; Molecular Dynamics Simulation; Nitriles; Protein Binding; Protozoan Proteins; Quantum Theory; Thermodynamics; Trypanocidal Agents; Trypanosoma cruzi
01 Pubblicazione su rivista::01a Articolo in rivista
Experimental study and computational modelling of cruzain cysteine protease inhibition by dipeptidyl nitriles / Dos Santos, Alberto Monteiro; Cianni, Lorenzo; De Vita, Daniela; Rosini, Fabiana; Leitão, Andrei; Laughton, Charles A; Lameira, Jerônimo; Montanari, Carlos A. - In: PHYSICAL CHEMISTRY CHEMICAL PHYSICS. - ISSN 1463-9076. - 20:37(2018), pp. 24317-24328. [10.1039/c8cp03320j]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1404892
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