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Novel MRSA-targeting phage MetB16: Genomic features, structural insights, and therapeutic applications

dc.contributor.authorErdogdu, Berna
dc.contributor.authorDokuz, Senanur
dc.contributor.authorGungor, Gorkem
dc.contributor.authorLin, Wei
dc.contributor.authorTong, Yigang
dc.contributor.authorOzbek, Tulin
dc.date.accessioned2026-06-27T15:20:42Z
dc.date.issued2025
dc.description.abstractBackground/aim: Recent reports have indicated that multidrug-resistant strains of S. aureus, including methicillin-resistant strains, may pose a significant threat to public health and global economic stability. Materials and methods: In this study, we present the isolation and comprehensive characterization of a novel phage, derived from clinically isolated MRSA strains. Results: MetB16 exhibited an incubation period of approximately 20 min, a lysis period of around 45 min, and a burst size of 127 Plaque Forming Units (PFU)/cell. The phage demonstrated remarkable biological stability across a pH spectrum of 4.0-9.0 and maintained integrity within a temperature range of 37 and-80 degrees C. Scanning transmission electron microscopy and phylogenetic analyzes classified MetB16 as belonging to the Triavirus genus, representing a novel species within the Triaviruses. Whole-genome sequencing revealed a 45,295 bp-long genome size with a G + C content of 33.34%. Notably, bioinformatic analyses identified random integration sites within the MRSA genome. Functional annotation of the genome uncovered 72 open reading frames (ORFs), of which 34 encoded hypothetical proteins of unknown function, and these ORFs were associated with phage structure, packaging, host lysis, DNA metabolism, and additional functions. To elucidate the therapeutic potential of temperate phages, detailed structural analyses were conducted on key proteins, including holin, endolysin, and minor tail proteins of MetB16. Conclusion: This study provides for the first time, the preliminary studies on the biological properties of MetB16 and comprehensive data facilitating an in-depth analysis of the mechanism underlying phage-host interactions, serving as a valuable reference for the evaluation of temperate phages in phage therapy.en
dc.description.sponsorshipScientific and Technological Research Council of Trkiye (TBIdot
dc.description.sponsorshipTAK) [120R016]
dc.description.urihttps://doi.org/10.55730/1300-0152.2746
dc.identifier.doi10.55730/1300-0152.2746
dc.identifier.eissn1303-6092
dc.identifier.issn1300-0152
dc.identifier.issue3
dc.identifier.pubmed40678418
dc.identifier.urihttps://hdl.handle.net/20.500.14981/69986
dc.identifier.volume49
dc.identifier.wos001523096900006
dc.language.isoeng
dc.publisherTubitak Scientific & Technological Research Council Turkey
dc.relation.ispartofTURKISH JOURNAL OF BIOLOGY
dc.rightsopenAccess
dc.subjectMethicillin-resistant Staphylococcus aureus (MRSA)
dc.subjectprophage induction
dc.subjectmodeling phage protein
dc.subjectphage bioinformatics
dc.subjectBACTERIOPHAGES
dc.subjectINFECTIONS
dc.subjectDIVERSITY
dc.subjectLife Sciences & Biomedicine - Other Topics
dc.titleNovel MRSA-targeting phage MetB16: Genomic features, structural insights, and therapeutic applications
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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