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A theoretical study of Zn++ interacting with models of ligands present at the thermolysin active site
Authors:Claude Giessner-Prettre  Olivier Jacob
Institution:(1) Laboratoire de Chimie Organique Théorique, Université Pierre et Marie Curie, Batiment F, 4, place Jussieu, 75252 Paris Cedex 05, France;(2) Laboratoire de Chimie Organique Physique (ERA 422), Groupe de RMN et de Modelisation Moléculaire, Institut Le Bel, rue Blaise Pascal, 67000 Strasbourg, France
Abstract:Summary The binding energy and the geometrical arrangements of the complexes formed by the zinc dication with OH, one, four, five or six water molecules, SH, H2S, formic acid, the formate anion, imidazole, its anion and formamide are calculated using the MNDO method. The comparison of the results obtained with those of ab initio computations on the same complexes induced us to propose for Zn++ a set of parameters different from the one determined by Dewar for the neutral metal atom. Using the two MNDO parametrizations, similar calculations are carried out for Zn++ interacting with two molecules of 2-aminoethanethiol and with models of the four ligands which are present at the thermolysin active site, in order to evaluate the possibilities and limitations of this semiempirical method for theoretical studies concerning zinc metalloenzymes. In the last case, the results obtained suggest that, in the crystal state, the water molecule could be deprotonated. This finding is discussed in relation with the mechanism of action of the enzyme which has been proposed.This laboratory is part of UA 506 of the C.N.R.S.
Keywords:Zn++-complexes  MNDO  Ab initio  Thermolysin active site
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