Abstract
Metallo-β-lactamases (MBLs)—Zn2+-dependent β-lactamases that compromise the efficacy of most βlactam antibiotics, including carbapenems—are difficult to monitor rapidly with broadly applicable small-molecule probes due to the structural diversity among the MBLs. Fluorescent thiol-based probes that bind to the dinuclear Zn2+ active site would offer a mechanistically different approach for the selective detection and inhibition of MBLs compared to serine β-lactamases (SBLs); however, their performance across genetically divergent MBLs remains poorly defined. To clarify the structural determinants governing probe recognition across different MBLs, we examined the structure–activity relationships using a homologous series of dansyl-based thiol probes, DansylCnSH (n=2 and 4–6) toward BlaB, a class B MBL of Elizabethkingia meningoseptica, and compared their behavior with those of the clinically relevant MBLs imipenemase-1 (IMP-1) and Verona integron-encoded metallo-β-lactamase 2 (VIM-2). Consistent with the minimal differences in fluorescence enhancement among the series, BlaB inhibition exhibited only modest spacer-length dependence (IC50=29–51µM; apparent inhibition constants (Kiapp) =3600–5910nM). In contrast, IMP-1 and VIM-2 showed markedly stronger fluorescence emission and inhibitory potencies (IMP-1: IC50=0.7–5.2µM; Kiapp=140–1100nM; VIM-2: IC50=1.5–2.1µM; Kiapp=286–370nM), reflecting their distinct active-site architectures. Docking analyses further revealed distinct binding orientations that explain their photophysical behaviors. No fluorescence enhancement or inhibition was observed with the class A SBL Guiana extended-spectrum β-lactamase-3 (GES-3), confirming the high selectivity and specificity of the DansylCnSH series. These findings allow identifying key structural determinants governing selective activation and inhibition of fluorescence from each MBL.
| Original language | English |
|---|---|
| Pages (from-to) | 691-700 |
| Number of pages | 10 |
| Journal | Biological and Pharmaceutical Bulletin |
| Volume | 49 |
| Issue number | 4 |
| DOIs | |
| Publication status | Published - 2026 |
| Externally published | Yes |
All Science Journal Classification (ASJC) codes
- Pharmacology
- Pharmaceutical Science
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