NMR-based modification of matrix metalloproteinase inhibitors with improved bioavailability

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Abstract

The NMR-based discovery of biaryl hydroxamate inhibitors of the matrix metalloproteinase stromelysin (MMP-3) has been previously described (Hajduk et al. J. Am. Chem. Soc. 1997, 119, 5818-5827). While potent in vitro, these inhibitors exhibited no in vivo activity due, at least in part, to the poor pharmacokinetic properties of the alkylhydroxamate moiety. To circumvent this liability, NMR-based screening was implemented to identify alternative zinc-chelating groups. Using this technique, 1-naphthyl hydroxamate was found to bind tightly to the protein (KD = 50 μM) and was identified as a candidate for incorporation into the lead series. On the basis of NMR-derived structural information, the naphthyl hydroxamate and biaryl fragments were linked together to yield inhibitors of this enzyme that exhibited improved bioavailability. These studies demonstrate that the NMR-based screening of fragments can be effectively applied to improve the physicochemical or pharmacokinetic profile of lead compounds.

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Hajduk, P. J., Shuker, S. B., Nettesheim, D. G., Craig, R., Augeri, D. J., Betebenner, D., … Fesik, S. W. (2002). NMR-based modification of matrix metalloproteinase inhibitors with improved bioavailability. Journal of Medicinal Chemistry, 45(26), 5628–5639. https://doi.org/10.1021/jm020160g

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