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Microcalorimetric study of the inhibition of butyrylcholinesterase by paraoxon
Authors:Jean Debord  Michel Harel  Bernard Verneuil  Thierry Dantoine
Institution:a Service de Pharmacologie-Toxicologie, Hôpital Dupuytren, 87042 Limoges, France
b Laboratoire de Pharmacologie, Faculté de Médecine, 87025 Limoges, France
c Institut Universitaire de Formation des Maîtres, 87036 Limoges, France
d Institut de Mathématiques de Toulouse (UMR CNRS 5219), 31062 Toulouse, France
e Laboratoire de Chimie des Substances Naturelles, Faculté des Sciences, 87060 Limoges, France
f Groupement de Recherche Eau, Sol, Environnement, Faculté des Sciences, 87060 Limoges, France
g Service de Gérontologie clinique, Hôpital Dupuytren, 87042 Limoges, France
Abstract:The inhibition of horse serum butyrylcholinesterase (EC 3.1.1.8) by the organophosphorus compound paraoxon (diethyl 4-nitrophenyl phosphate) was studied by flow microcalorimetry at 37 °C in Tris buffer (pH 7.5) using a modification of the kinetic model described by Stojan and coworkers J. Stojan, V. Marcel, S. Estrada-Mondaca, A. Klaebe, P. Masson, D. Fournier, A putative kinetic model for substrate metabolisation by Drosophila acetylcholinesterase, FEBS Lett. 440 (1998) 85-88]. The reversible steps of the inhibition were studied in the mixing cell of the calorimeter, whereas the irreversible step was studied in the flow-through cell. A new pseudo-first-order approximation was developed to allow the kinetic analysis of inhibition progress curves in the presence of substrate when a significant amount of substrate is transformed. This approximation also allowed one to compute an analytical expression of the calorimetric curves using a gamma distribution to describe the impulse response of the calorimeter. Fitting models to data by nonlinear regression, with simulated annealing as a stochastic optimization method, allowed the determination of all kinetic parameters. It was found that paraoxon binds to both the enzyme and acyl-enzyme, but with weak affinities (Ki = 0.123 mM and Ki = 5.5 mM). A slight activation was observed at the lowest paraoxon concentrations and was attributed to the binding of the substrate to the enzyme-inhibitor complex. The bimolecular inhibition rate constant ki = 2.8 × 104 M−1 s−1 was in agreement with previous studies. It is hoped that the methods developed in this work will contribute to extending the application range of microcalorimetry in the field of irreversible inhibitors.
Keywords:Butyrylcholinesterase  Butyrylcholine  Paraoxon  Microcalorimetry  Irreversible inhibition
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