Novel mechanism of inhibition of elastase by β-lactams is defined by two inhibitor crystal complexes

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Abstract

Two structurally related β-lactams form different covalent complexes upon reaction with porcine elastase. The high resolution x-ray structures of these two complexes provide a clear insight into the mechanism of the reaction and suggest the design of a new class of serine protease inhibitors that resist enzyme reactivation by hydrolysis of the acyl intermediate. The presence of a hydroxyethyl substituent on the β-lactam ring provides a new reaction pathway resulting in the elimination of the hydroxyethyl group and the formation of a stabilizing conjugated double bond system. In contrast, the presence of a diethyl substituent on the β-lactam ring leads to addition of water. The two enzyme complexes show very different binding modes in the enzyme active site.

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Taylor, P., Anderson, V., Dowden, J., Flitsch, S. L., Turner, N. J., Loughran, K., & Walkinshaw, M. D. (1999). Novel mechanism of inhibition of elastase by β-lactams is defined by two inhibitor crystal complexes. Journal of Biological Chemistry, 274(35), 24901–24905. https://doi.org/10.1074/jbc.274.35.24901

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