Escherichia coli phylogeny drives co-amoxiclav resistance through variable expression of TEM-1 beta-lactamase.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 41028731.
- Also identified by DOI 10.1038/s41467-025-63714-6 and PMC identifier 12484619.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Co-amoxiclav (amoxicillin and clavulanate) is a commonly used combination antibiotic, with resistance in Escherichia coli associated with increased mortality. The class A beta-lactamase bla<sub>TEM-1</sub> is often carried by resistant E. coli but exhibits high phenotypic heterogeneity, complicating genotype-phenotype predictions. We curated a dataset of n = 377 diverse E. coli isolates where the only acquired beta-lactamase was bla<sub>TEM-1</sub>. We generated hybrid assemblies and co-amoxiclav minimum inhibitory concentrations (MICs), and bla<sub>TEM-1</sub> qPCR expression data for a subset (n = 67/377). We first tested whether intrinsic expression of bla<sub>TEM-1</sub> varied between E. coli lineages, for example, from regulatory system differences, which are challenging to genomically quantify. Using genotypic features, we built a hierarchical Bayesian model for bla<sub>TEM-1</sub> expression, controlling for phylogeny. Expression varied across the phylogeny, with some lineages (phylogroups B1 and C, ST12) expressing bla<sub>TEM-1</sub> more than others (phylogroups E and F, ST372). Next, we built a second model to predict isolate MIC from genotypic features, again controlling for phylogeny. Phylogeny alone shifted MIC past the clinical breakpoint in 19% (55/292) of isolates with greater-than-chance probability, mostly representing ST12, ST69 and ST127. A third causal model confirmed that phylogenetic influence on bla<sub>TEM-1</sub> expression drove variation in MIC. We speculate that intergenic variation underlies this effect.
Medical subject headings
- beta-Lactamases
- Escherichia coli
- Anti-Bacterial Agents