Pyoluteorin Production Drives the Antimicrobial-Potentiating Activity of Alpaca Oral Microbiota Components

Abstract Objective: The animal oral microbiota represents a promising reservoir of microorganisms that produce antimicrobial metabolites and compounds capable of modulating bacterial antibiotic sensitivity. Here, we aimed to screen the oral microbiota of alpacas to identify microbial strains exhibiting antimicrobial activity against Gram-negative and Gram-positive bacteria, fungi, and yeasts. Methods: To dissect the underlying antimicrobial mechanisms, we selected Pseudomonas isolates that displayed targeted activity against Gram-negative bacteria and subjected them to metabolomic profiling. Results and Discussion: The analysis revealed that this antimicrobial activity is driven by the production of pyoluteorin, a membrane-active metabolite. Although pyoluteorin alone exhibited limited antimicrobial efficacy, it strongly potentiated the action of clinically relevant antibiotics. Notably, at a sub-cytotoxic concentration of 1.5 μg/mL (IC50 = 2.0 ± 0.3 μg/mL), pyoluteorin sensitized antibiotic-resistant Klebsiella pneumoniae strains, enhancing their susceptibility to the membrane-disrupting antibiotic polymyxin B by an order of magnitude. Conclusions: The future development of bacterio-selective membrane-active agents will facilitate the deployment of such synergistic approaches for the emergency treatment of infectious diseases caused by multidrug-resistant pathogens.

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Publication Details

Journal
Russian Journal of Bioorganic Chemistry
Published
2026-09-04
DOI
https://doi.org/10.1134/s1068162026602521
Primary Topic
Oral microbiology and periodontitis research
Type
article
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article

Pyoluteorin Production Drives the Antimicrobial-Potentiating Activity of Alpaca Oral Microbiota Components

Arina Baranova, И. В. Смирнов, Yu. A. Ikhalainen, С. С. Терехов et al.
Russian Journal of Bioorganic Chemistry
Oral microbiology and periodontitis research
article

Pyoluteorin Production Drives the Antimicrobial-Potentiating Activity of Alpaca Oral Microbiota Components

Arina Baranova, И. В. Смирнов, Yu. A. Ikhalainen, С. С. Терехов, R. B. Gorodnichev, I. A. Rodin, V.A. Alferova, L.T.D. Nguyen, M. Yu. Zhitlov, O. A. Belozerova, G. P. Popova, G. Kh. Kudryakova, E. A. Trusova, S. S. Sinel’nikova, V. A. Korshun, A. M. Kudzhaev
article en

Abstract

Abstract Objective: The animal oral microbiota represents a promising reservoir of microorganisms that produce antimicrobial metabolites and compounds capable of modulating bacterial antibiotic sensitivity. Here, we aimed to screen the oral microbiota of alpacas to identify microbial strains exhibiting antimicrobial activity against Gram-negative and Gram-positive bacteria, fungi, and yeasts. Methods: To dissect the underlying antimicrobial mechanisms, we selected Pseudomonas isolates that displayed targeted activity against Gram-negative bacteria and subjected them to metabolomic profiling. Results and Discussion: The analysis revealed that this antimicrobial activity is driven by the production of pyoluteorin, a membrane-active metabolite. Although pyoluteorin alone exhibited limited antimicrobial efficacy, it strongly potentiated the action of clinically relevant antibiotics. Notably, at a sub-cytotoxic concentration of 1.5 μg/mL (IC50 = 2.0 ± 0.3 μg/mL), pyoluteorin sensitized antibiotic-resistant Klebsiella pneumoniae strains, enhancing their susceptibility to the membrane-disrupting antibiotic polymyxin B by an order of magnitude. Conclusions: The future development of bacterio-selective membrane-active agents will facilitate the deployment of such synergistic approaches for the emergency treatment of infectious diseases caused by multidrug-resistant pathogens.

Russian Journal of Bioorganic ChemistryVol. 52(5)
Moscow Institute of Physics and Technology (RU), Moscow Power Engineering Institute (RU), Lomonosov Moscow State University (RU), Institute of Bioorganic Chemistry (RU), Federal Medical-Biological Agency (RU)
Good health and well-being
Openalex Percentile: Top 9%
Oral microbiology and periodontitis research
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