Substitutions in PBP2b from β-lactam resistant Streptococcus pneumoniae have different effects on enzymatic activity and drug reactivity
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2017-01-06
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Abstract
Pneumococcus resists β-lactams by expressing variants of its target enzymes, the penicillin-binding proteins (PBPs), with many amino acid substitutions. Up to 10% of the sequence can be modified. These altered PBPs have a much reduced reactivity with the drugs but retain their physiological activity of cross-linking the peptidoglycan, the major constituent of the bacterial cell wall. However, as β-lactams are chemical and structural mimics of the natural substrate, resistance mediated by altered PBPs raises the following paradox: how PBPs that react poorly with the drugs maintain a sufficient level of activity with the physiological substrate? This question is addressed for the first time in this study, which compares the peptidoglycan cross-linking activity of PBP2b from susceptible and resistant strains with their inhibition by different β-lactams. Unexpectedly, the enzymatic activity of the variants did not correlate with their antibiotic reactivity. This finding indicates that some of the numerous amino acid substitutions were selected to restore a viable level of enzymatic activity by a compensatory molecular mechanism.
Keywords
antibiotic resistance, cell wall, enzyme kinetics, peptidoglycan, Streptococcus
Citation
Calvez, P, Breukink, E, Roper, D I, Dib, M, Contreras-Martel, C & Zapun, A 2017, 'Substitutions in PBP2b from β-lactam resistant Streptococcus pneumoniae have different effects on enzymatic activity and drug reactivity', Journal of Biological Chemistry, vol. 292, no. 7, pp. 2854-2865. https://doi.org/10.1074/jbc.M116.764696