Antibiotics stimulate protein transfer to persister cells
2026-06-25
SCID: 54.1/e9gqzt94
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antibiotic-induced vesicle releasemembrane stress responseprotein uptake and antibiotic persistencesingle-cell transcriptomic profilingvesicle-mediated horizontal protein transfer
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Abstract (AI)
The exchange of biological matter between bacterial cells drives adaptation and evolution. However, whether bacteria can exchange functional proteins remains unclear. In this work, we found that antibiotic treatment can induce vesicle-mediated horizontal protein transfer within and between bacterial species. We developed a genetic system in Escherichia coli to track transfer events and performed single-cell transcriptomic profiling on an isogenic population of bacteria. Antibiotics stimulated the differentiation of this isogenic population into distinct cell states: donor cells that activated a membrane stress response to release protein-containing vesicles and recipient cells that suppressed this response to acquire protein from their neighbors. Protein uptake enhanced the antibiotic persistence of recipient cells, revealing that vesicle exchange promotes bacterial survival during antibiotic treatment.
Key Findings
1
A genetic tracking system in Escherichia coli enabled detection of protein transfer events at single-cell resolution.
2
Antibiotic treatment induces vesicle-mediated horizontal protein transfer within and between bacterial species.
3
Protein uptake by recipient cells enhanced their antibiotic persistence, showing vesicle exchange promotes survival during antibiotic treatment.
4
Single-cell transcriptomics revealed antibiotic-stimulated differentiation into donor cells (activating membrane stress response to release protein-containing vesicles) and recipient cells (suppressing this response to acquire proteins).
Research Object
Vesicle-mediated horizontal protein transfer between bacterial cells (within and between species), studied in Escherichia coli
Research Subject
Antibiotic-stimulated differentiation into donor and recipient cell states, mechanism of vesicle release and protein uptake, and the effect of protein acquisition on antibiotic persistence of recipient cells
Publication Details
Publication Date
2026-06-25
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