Cell envelope structural and functional contributions to antibiotic resistance in Burkholderia cenocepacia
Hogan, A. M.; Motnenko, A.; Rahman, A. S. M. Z.; Cardona, S. T.
Show abstract
Antibiotic activity is limited by the physical construction of the Gram-negative cell envelope. Species of the Burkholderia cepacia complex (Bcc) are known as intrinsically multidrug-resistant opportunistic pathogens with low permeability cell envelopes. Here, we re-examined a previously performed chemical-genetic screen of barcoded transposon mutants in B. cenocepacia K56-2, focusing on cell envelope structural and functional processes. We identified structures mechanistically important for resistance to singular and multiple antibiotic classes. For example, the polymeric O-antigen was important for resistance to cationic antibiotics, while defects in peptidoglycan precursor synthesis specifically increased susceptibility to cycloserine and revealed a new putative amino acid racemase. Susceptibility to novobiocin, avibactam, and the LpxC inhibitor, PF-04753299, was linked to the BpeAB-OprB efflux pump, suggesting these drugs are substrates for this pump in B. cenocepacia. Additionally, disruption of the periplasmic disulfide bond formation system caused pleiotropic defects on outer membrane integrity and {beta}-lactamase activity. Our findings highlight the layering of resistance mechanisms in the structure and function of the cell envelope. Consequently, we point out processes that can be targeted for developing antibiotic potentiators. ImportanceThe Gram-negative cell envelope is a double-layered physical barrier that protects cells from extracellular stressors, such as antibiotics. The Burkholderia cell envelope is known to contain additional modifications that reduce permeability. We investigated Burkholderia cell envelope factors contributing to antibiotic resistance from a genome-wide view by re-examining data from a transposon mutant library exposed to an antibiotic panel. We identified susceptible phenotypes for defects in structures and functions in the outer membrane, periplasm, and cytoplasm. Overall, we show that resistance linked to the cell envelope is multifaceted and provides new targets for the development of antibiotic potentiators.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- LPS O-antigen polysaccharide length impacts outer membrane permeability of enteric gram-negative bacteria 98%
- A new class of cell wall-recycling L,D-carboxypeptidase determines β-lactam susceptibility and morphogenesis in Acinetobacter baumannii 97%
- Secreted retropepsin-like enzymes are essential for stress tolerance and biofilm formation in Pseudomonas aeruginosa 97%
Similar papers in this journal
- Chemical-genetic interaction mapping links carbon metabolism and cell wall structure to tuberculosis drug efficacy 97%
- One gene, multiple ecological strategies: a biofilm regulator is a capacitor for sustainable diversity 96%
- Genetic dominance governs the evolution and spread of mobile genetic elements in bacteria 96%
Similar papers in this journal
- Mapping the Role of AcrAB-TolC Efflux Pumps in the Evolution of Antibiotic Resistance Reveals Near-MIC Treatments Facilitate Resistance Acquisition 97%
- Loss of β-ketoacyl acyl carrier protein synthase III activity restores multidrug-resistant Escherichia coli sensitivity to previously ineffective antibiotics 97%
- Diversity and prevalence of Clostridium innocuum in the human gut microbiota 95%
Similar papers in this journal
- A complex regulatory network governs the production of an antibiotic with unusual cell-density-dependence 97%
- Complex interplay between gene deletions and the environment uncovers cellular roles for genes of unknown function in Escherichia coli 97%
- The stringent stress response controls proteases and global regulators under optimal growth conditions in Pseudomonas aeruginosa 96%
Similar papers in this journal
- Analysis of Essential Genes in Clostridioides difficile by CRISPRi and Tn-seq 97%
- Intracellular glutamine fluctuates with nitrogen availability and regulates Mycobacterium smegmatis biofilm formation 97%
- DNA repair is essential for Vibrio cholerae growth on Thiosulfate-Citrate-Bile Salts-Sucrose (TCBS) Medium 97%
"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.