Structure-Based Design of Cathepsin K Inhibitors Containing a Benzyloxy-Substituted Benzoyl Peptidomimetic

Peptidomimetic cathepsin K inhibitors have been designed using binding models which were based on the X-ray crystal structure of an amino acid-based, active site-spanning inhibitor complexed with cathepsin K. These inhibitors, which contain a benzyloxybenzoyl group in place of a Cbz-leucine moiety,...

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Veröffentlicht in:Journal of medicinal chemistry 1998-10, Vol.41 (21), p.3923-3927
Hauptverfasser: Thompson, Scott K, Smith, Ward W, Zhao, Baoguang, Halbert, Stacie M, Tomaszek, Thaddeus A, Tew, David G, Levy, Mark A, Janson, Cheryl A, D‘Alessio, Karla J, McQueney, Michael S, Kurdyla, Jeff, Jones, Christopher S, DesJarlais, Renee L, Abdel-Meguid, Sherin S, Veber, Daniel F
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Sprache:eng
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Zusammenfassung:Peptidomimetic cathepsin K inhibitors have been designed using binding models which were based on the X-ray crystal structure of an amino acid-based, active site-spanning inhibitor complexed with cathepsin K. These inhibitors, which contain a benzyloxybenzoyl group in place of a Cbz-leucine moiety, maintained good inhibitory potency relative to the amino acid-based inhibitor, and the binding models were found to be very predictive of relative inhibitor potency. The binding mode of one of the inhibitors was confirmed by X-ray crystallography, and the crystallographically determined structure is in close qualitative agreement with the initial binding model. These results strengthen the validity of a strategy involving iterative cycles of structure-based design, inhibitor synthesis and evaluation, and crystallographic structure determination for the discovery of peptidomimetic inhibitors.
ISSN:0022-2623
1520-4804
DOI:10.1021/jm980474x