A novel mechanism of unstable heteroresistance via reversible ompP2 mutations in Haemophilus influenzae
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OBJECTIVES: Heteroresistance, the presence of a resistant subpopulation within a predominantly susceptible bacterial isolate, is usually difficult to detect and can cause treatment failure. Mechanisms driving unstable heteroresistant phenotypes, which rapidly revert in the absence of antibiotics, remain poorly understood. METHODS: To investigate the mechanisms underlying heteroresistance in Haemophilus influenzae, we isolated four heteroresistant clones and characterized them through experimental evolution, gradient diffusion assays, population analysis profiling (PAP), and whole genome sequencing. RESULTS: All clones initially exhibited increased ceftriaxone minimum inhibitory concentrations (MICs) but rapidly reverted to wild-type susceptibility within 4 days in drug-free conditions. The main mechanism was reversible structural changes of the ompP2 gene. Three clones exhibiting a 168 bp genomic inversion affecting ompP2 reverted to wild-type sequence. A fourth clone with an ompP2 frameshift insertion reproducibly acquired compensatory deletions restoring the open reading frame. PAP analysis still detected minority subpopulations with 4x-8x increased MICs at day 4. We identified site-specific DNA breakpoints with a palindrome and a homologous sequence facilitating rapid structural genome changes and phenotypic switching. CONCLUSION: We discovered a novel mechanism of unstable heteroresistance in H. influenzae, mediated by reversible structural changes in the gene ompP2. Rapid phenotypic switching was induced by ceftriaxone exposure and likely reflects the mutational plasticity of ompP2.
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- A novel mechanism of unstable heteroresistance via reversible ompP2 mutations in Haemophilus influenzae
- Date Crossref
- 01/12/2025
- Éditeur
- Elsevier BV
- Type
- journal-article
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