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Novel Insights into the Classification of Staphylococcal β-Lactamases in Relation to the Cefazolin Inoculum Effect
Lina P Carvajal1, Sandra Rincon1, Aura M Echeverri1
1Molecular Genetics and Antimicrobial Resistance Unit, International Center for Microbial Genomics, Universidad El Bosque, Bogota, Colombia.
Abstract:
Cefazolin has become a prominent therapy for methicillin-susceptible Staphylococcus aureus (MSSA) infections. However, an important concern is the cefazolin inoculum effect (CzIE), a phenomenon mediated by staphylococcal β-lactamases. Four variants of staphylococcal β-lactamases have been described based on serological methodologies and limited sequence information. Here, we sought to reassess the classification of staphylococcal β-lactamases and their correlation with the CzIE. We included a large collection of 690 contemporary bloodstream MSSA isolates recovered from Latin America, a region with a high prevalence of the CzIE. We determined cefazolin MICs at standard and high inoculums by broth microdilution. Whole-genome sequencing was performed to classify the β-lactamase in each isolate based on the predicted full sequence of BlaZ. We used the classical schemes for β-lactamase classification and compared it to BlaZ allotypes found in unique sequences using the genomic information. Phylogenetic analyses were performed based on the BlaZ and core-genome sequences. The overall prevalence of the CzIE was 40%. Among 641 genomes, type C was the most predominant β-lactamase (37%), followed by type A (33%). We found 29 allotypes and 43 different substitutions in BlaZ. A single allotype, designated BlaZ-2, showed a robust and statistically significant association with the CzIE. Two other allotypes (BlaZ-3 and BlaZ-5) were associated with a lack of the CzIE. Three amino acid substitutions (A9V, E112A, and G145E) showed statistically significant association with the CzIE (P = <0.01). CC30 was the predominant clone among isolates displaying the CzIE. Thus, we provide a novel approach to the classification of the staphylococcal β-lactamases with the potential to more accurately identify MSSA strains exhibiting the CzIE.
Insights
A novel classification of staphylococcal beta-lactamases accurately identifies methicillin-susceptible Staphylococcus aureus (MSSA) strains with the cefazolin inoculum effect (CzIE). This study analyzed 690 MSSA isolates, revealing specific beta-lactamase allotypes linked to CzIE.
Area of Science:
- Microbiology and Infectious Diseases
- Genomics and Bioinformatics
- Antimicrobial Resistance
Background:
- Cefazolin is a key treatment for methicillin-susceptible Staphylococcus aureus (MSSA) infections.
- The cefazolin inoculum effect (CzIE), driven by staphylococcal beta-lactamases, complicates cefazolin therapy.
- Existing beta-lactamase classification relies on limited serological and sequence data.
Purpose of the Study:
- To re-evaluate staphylococcal beta-lactamase classification.
- To correlate beta-lactamase variants with the cefazolin inoculum effect (CzIE).
- To identify genetic markers associated with CzIE in MSSA.
Main Methods:
- Analysis of 690 MSSA bloodstream isolates from Latin America.
- Determination of cefazolin minimum inhibitory concentrations (MICs) at standard and high inoculums.
- Whole-genome sequencing for BlaZ gene analysis and phylogenetic classification.
- Comparison of classical beta-lactamase schemes with genomic BlaZ allotypes.
Main Results:
- The overall prevalence of CzIE was 40% in the study cohort.
- A novel beta-lactamase allotype, BlaZ-2, was strongly associated with CzIE.
- Specific amino acid substitutions (A9V, E112A, G145E) in BlaZ significantly correlated with CzIE.
- CC30 was the predominant clone among isolates exhibiting CzIE.
Conclusions:
- A refined classification of staphylococcal beta-lactamases based on whole-genome sequencing improves CzIE identification.
- The BlaZ-2 allotype and specific amino acid substitutions are reliable markers for predicting CzIE.
- This approach enhances the ability to identify MSSA strains likely to exhibit the cefazolin inoculum effect.
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