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November 1, 1984Biochemistry249 citations

An interactive computer graphics study of thermolysin-catalyzed peptide cleavage and inhibition by N-carboxymethyl dipeptides

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DHDavid HangauerAMA.F. MonzingoBMBrian W. Matthews

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Abstract

Interactive computer graphics was used as a tool in studying the cleavage mechanism of the model substrate Z-Phe-Phe-Leu-Trp by the zinc endopeptidase thermolysin. Two Michaelis complexes and three binding orientations of the tetrahedral intermediate to the crystal structure of thermolysin were investigated. Our results indicate that a Michaelis complex, which does not involve coordination of the scissile peptide to the zinc, is consistent with available experimental data and the most plausible of the two complexes. A tetrahedral intermediate complex wherein the two oxygens of the hydrated scissile peptide straddle the zinc in a bidentate fashion results in the most favorable interactions with the active site. The preferred tetrahedral intermediate and Michaelis complex provide a rationalization for the published substrate data. A trajectory for proceeding from the Michaelis complex to the tetrahedral intermediate is proposed. This trajectory involves a simultaneous activation of the zinc-bound water molecule concurrent with attack on the scissile peptide. A detailed ordered product release mechanism is also presented. These studies suggest some modifications and a number of extensions to the mechanism proposed earlier Kester, W. R., Holmes, M. A., & Matthews, B. W. (1981) Biochemistry 20, 6912. The binding mode of the thermolysin inhibitor N-(1-carboxy-3-phenylpropyl)-L-leucyl-L-tryptophan Monzingo, A. F., & Matthews, B. W. (1984) Biochemistry (preceding paper in this issue) is compared with that of the preferred tetrahedral intermediate, providing insight into this inhibitor design.

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Hangauer et al. (1984) studied this question.

synapsesocial.com/papers/6a20d79bf76165bc1becb7c7https://doi.org/10.1021/bi00319a011
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