ArticlePLoS pathogens2023
Genome-wide phage susceptibility analysis in Acinetobacter baumannii reveals capsule modulation strategies that determine phage infectivity.
Article in PLoS pathogens, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 26 papers.
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Who cites it
26 citing papers in PubMed, 26 citations in OpenAlex.
- Should I stay or should I go? DNA damage thresholds drive stay-or-go decisions inJournal of bacteriology · 2026Review
- From screening to treatment:Microbiology spectrum · 2026Article
- Cross-family and phage-specific gene requirements for Klebsiella infection revealed by scalable RB-TnSeq genetic screens.PLoS genetics · 2026Article
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- Bacteriophages hijack 2',3'-cNMPs to enhance transposase-mediated phage DNA integration inScience advances · 2026Article
- Isolation and characterization of novel bacteriophage, vB_AbaA_SWMUZ8, targeting multidrug-resistant Acinetobacter baumannii strains.BMC microbiology · 2026Article
- Cross-reactive anti-prophage antibodies and bacterial heteroresistance implicated in phage therapeutic failure.Nature medicine · 2026Article
- Integrated wet lab and in silico discovery and characterization of bacteriophages with antibiotic synergy against multidrug resistant Acinetobacter baumannii.Scientific reports · 2026Article
- High magnitude of carbapenemase-producing Acinetobacter baumannii in sepsis patients at Ethiopian referral hospitals: a whole genome analysis.Scientific reports · 2026Article
- Steering the course: targeting and exploiting surface receptors in phage therapy.Journal of bacteriology · 2026Review
- Towards accurate artificial intelligence models for strain-level phage-host prediction.Briefings in bioinformatics · 2026Article
- Bacteriophages targetingFrontiers in microbiology · 2026Review
- A bacteriophage genus infects carbapenem resistantiScience · 2025Article
- Article
- Antibiotic-resistant Acinetobacter baumannii can be killed by a combination of bacteriophages and complement.Medical microbiology and immunology · 2025Article
- Acinetobacter phages use distinct strategies to breach the capsule barrier.PLoS pathogens · 2025Article
- Article
- Mystique, a broad host range Acinetobacter phage, reveals the impact of culturing conditions on phage isolation and infectivity.PLoS pathogens · 2025Article
- The interplay betweenInfection and immunity · 2025Article
- A phosphorylation signal activates genome-wide transcriptional control by BfmR, the global regulator of Acinetobacter resistance and virulence.Nucleic acids research · 2025Article
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Authors and funding
5 authors at 2 institutions in 1 country.
Funding
Abstract
Phage have gained renewed interest as an adjunctive treatment for life-threatening infections with the resistant nosocomial pathogen Acinetobacter baumannii. Our understanding of how A. baumannii defends against phage remains limited, although this information could lead to improved antimicrobial therapies. To address this problem, we identified genome-wide determinants of phage susceptibility in A. baumannii using Tn-seq. These studies focused on the lytic phage Loki, which targets Acinetobacter by unknown mechanisms. We identified 41 candidate loci that increase susceptibility to Loki when disrupted, and 10 that decrease susceptibility. Combined with spontaneous resistance mapping, our results support the model that Loki uses the K3 capsule as an essential receptor, and that capsule modulation provides A. baumannii with strategies to control vulnerability to phage. A key center of this control is transcriptional regulation of capsule synthesis and phage virulence by the global regulator BfmRS. Mutations hyperactivating BfmRS simultaneously increase capsule levels, Loki adsorption, Loki replication, and host killing, while BfmRS-inactivating mutations have the opposite effect, reducing capsule and blocking Loki infection. We identified novel BfmRS-activating mutations, including knockouts of a T2 RNase protein and the disulfide formation enzyme DsbA, that hypersensitize bacteria to phage challenge. We further found that mutation of a glycosyltransferase known to alter capsule structure and bacterial virulence can also cause complete phage resistance. Finally, additional factors including lipooligosaccharide and Lon protease act independently of capsule modulation to interfere with Loki infection. This work demonstrates that regulatory and structural modulation of capsule, known to alter A. baumannii virulence, is also a major determinant of susceptibility to phage.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.