A sensitive coupled HPLC/electrospray mass spectrometry assay for SPM-1 metallo-beta-lactamase inhibitors
Peggy A Sanchez1, Jeffrey H Toney, Janice D Thomas
1Department of Chemistry and Biochemistry, Montclair State University, Montclair, New Jersey, USA.
Abstract:
Antibiotic-resistant bacteria continue to threaten human health through multiple mechanisms, including hydrolytic inactivation of beta-lactam antibiotics by metallo-beta-lactamases (MBLs). The SPM-1 enzyme, originally identified from a Pseudomonas aeruginosa clinical isolate, is a Class B beta-lactamase responsible for resistance in bacteria against antibiotics such as penicillins, cephalosporins, and carbapenems. Unlike Class A, C, and D beta-lactamases, which employ a serine residue in their active site, Class B enzymes possess one or two Zn atoms in the active site that play both a structural and catalytic role. A beta-lactamase inhibitor with co-administration of a beta-lactam antibiotic has proven to be an effective treatment against antibiotic-resistant bacteria whose resistance is due to serine-based beta-lactamases (e.g., amoxicillin/clavulanic acid). A similar clinical approach has not yet been developed for resistant bacteria possessing MBLs. The identification and development of specific and effective MBL inhibitors to combat this resistance could extend the utility of currently prescribed antibiotics such as cephalosporins and carbapenems. To discover MBL inhibitors, compound libraries are screened typically by enzymatic hydrolysis of a chromogenic substrate such as nitrocefin monitored by absorbance. Spectrophotometric assays, while valuable, lack the sensitivity and selectivity to screen natural product extract libraries because of the strongly absorbing nature of some extracts and the dilute concentrations of active components. An assay is described herein that monitors the SPM-1-catalyzed hydrolysis of penicillin G by high-performance (high-pressure) liquid chromatography-electrospray mass spectroscopy, which permits investigations with greater sensitivity and selectivity allowing the screening of natural product extracts for inhibitors of MBLs.
Insights
Metallo-beta-lactamases (MBLs) confer antibiotic resistance. A new HPLC-MS assay enables sensitive screening of natural products for MBL inhibitors, crucial for combating resistant bacteria.
Area of Science:
- Microbiology
- Biochemistry
- Pharmacology
Background:
- Antibiotic-resistant bacteria pose a significant global health threat.
- Metallo-beta-lactamases (MBLs) are key enzymes conferring resistance to beta-lactam antibiotics.
- Current inhibitors are ineffective against MBL-mediated resistance.
Purpose of the Study:
- To develop a sensitive and selective assay for identifying metallo-beta-lactamase (MBL) inhibitors.
- To enable screening of natural product extracts for novel MBL inhibitors.
- To address the lack of effective treatments against MBL-producing bacteria.
Main Methods:
- Monitoring the hydrolysis of penicillin G by the SPM-1 MBL.
- Utilizing high-performance liquid chromatography-electrospray mass spectroscopy (HPLC-ES-MS) for detection.
- Comparing the new assay's sensitivity and selectivity against traditional spectrophotometric methods.
Main Results:
- The HPLC-ES-MS assay demonstrated high sensitivity and selectivity for monitoring SPM-1 activity.
- This method allows for the effective screening of complex natural product extracts.
- The assay overcomes limitations of conventional spectrophotometric assays.
Conclusions:
- A novel HPLC-ES-MS assay is established for MBL inhibitor discovery.
- This assay facilitates the screening of natural product libraries for potential MBL inhibitors.
- Developing MBL inhibitors is critical to restore the efficacy of existing antibiotics.
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