Phosphate limitation triggers Fe3+-dependent polymyxin resistance in Enterobacteriaceae
ZHANG, G.; Deng, Z.; JIANG, J.; WANG, M.; Wang, X.; Liu, X.; Yan, A.
Show abstract
Phosphate (Pi) scarcity, a pervasive stressor prevalent in bacterial infections and dysbiotic host environments, potently drives antimicrobial resistance (AMR) against cationic antibiotics like polymyxins across diverse bacterial taxa. While established Pi depletion-induced AMR mechanisms often involve membrane phospholipid remodelling, Enterobacteriaceae largely lack these pathways, leaving their Pi scarcity-driven AMR mechanism unresolved. Here, we reveal that Pi limitation robustly induces polymyxin resistance in Enterobacteriaceae through 4-amino-4-deoxy-L-arabinose (L-Ara4N) modification of the Gram-negative outer membrane component lipid A, reflecting a distinct adaptive strategy. This modification is driven by strong ugd-arn operon induction, mediated by the PmrAB two-component system. We discover that Pi depletion triggers cellular Mg{superscript 2} release, prompting compensatory Fe3 mobilization to the cell envelope that directly activates PmrAB. Crucially, this metal-dependent signaling axis offers a directly targetable mechanism for reversing polymyxin resistance, a significant deviation from the less accessible, PhoBR-regulated phospholipid remodelling strategies in other bacteria. We demonstrate that Mg{superscript 2} supplementation or Fe3 chelation effectively suppresses PmrAB activation and restores polymyxin susceptibility, thereby establishing a novel, metal-centric paradigm for understanding and pharmacological intervention in stress-induced AMR.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Designing efficient genetic code expansion in Bacillus subtilis to gain biological insights 97%
- Non-consecutive enzyme interactions within TCA cycle supramolecular assembly regulate carbon-nitrogen metabolism 96%
- Temporal gene regulation enables controlled expression of gas vesicles and preserves bacterial viability 96%
Similar papers in this journal
- A new role for lipoproteins LpqZ and FecB in orchestrating mycobacterial cell envelope biogenesis 96%
- Revisiting oxygen toxicity: evolution and adaptation to superoxide in a SOD-deficient bacterial pathogen 96%
- Quorum sensing mediates morphology and motility transitions in the model archaeon Haloferax volcanii 96%
Similar papers in this journal
- The mycomembrane differentially and heterogeneously restricts antibiotic permeation 94%
- A multiplexed, target-based phenotypic screening platform using CRISPR interference in Mycobacterium abscessus 94%
- An engineered prodrug selectively suppresses β-lactam resistant bacteria in a mixed microbial setting 94%
Similar papers in this journal
- Fluoride triggers lysis in Streptococcus mutans by inhibition of Clp protease complex leading to an unabated competence cascade 97%
- Horizontal gene transfer in the human and skin commensal Malassezia: a bacterially-derived flavohemoglobin is required for NO resistance and host interaction 95%
- Revealing 29 sets of independently modulated genes in Staphylococcus aureus, their regulators and role in key physiological responses 94%
Similar papers in this journal
- Periplasm homeostatic regulation maintains spatial constraints essential for cell envelope processes and cell viability 96%
- Amoxicillin-resistant Streptococcus pneumoniae can be resensitized by targeting the mevalonate pathway as indicated by sCRilecs-seq 95%
- Antimicrobial activity of iron-depriving pyoverdines against human opportunistic pathogens 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.