Fragment-guided design of subnanomolar β-lactamase inhibitors active in vivo.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 23043117.
- Also identified by DOI 10.1073/pnas.1208337109 and PMC identifier 3491531.
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Abstract
Fragment-based design was used to guide derivatization of a lead series of β-lactamase inhibitors that had heretofore resisted optimization for in vivo activity. X-ray structures of fragments overlaid with the lead suggested new, unanticipated functionality and points of attachment. Synthesis of three derivatives improved affinity over 20-fold and improved efficacy in cell culture. Crystal structures were consistent with the fragment-based design, enabling further optimization to a K(i) of 50 pM, a 500-fold improvement that required the synthesis of only six derivatives. One of these, compound 5, was tested in mice. Whereas cefotaxime alone failed to cure mice infected with β-lactamase-expressing Escherichia coli, 65% were cleared of infection when treated with a cefotaxime:5 combination. Fragment complexes offer a path around design hurdles, even for advanced molecules; the series described here may provide leads to overcome β-lactamase-based resistance, a key clinical challenge.
Medical subject headings
- Anti-Bacterial Agents
- Drug Design
- Enzyme Inhibitors
- beta-Lactamase Inhibitors