Yersinia enterocolitica-Specific Infection by Bacteriophages TG1 and ϕR1-RT Is Dependent on Temperature-Regulated Expression of the Phage Host Receptor OmpF

Author:

Leon-Velarde Carlos G.12ORCID,Happonen Lotta34,Pajunen Maria5,Leskinen Katarzyna5,Kropinski Andrew M.67,Mattinen Laura5,Rajtor Monika5,Zur Joanna5,Smith Darren8,Chen Shu1,Nawaz Ayesha5,Johnson Roger P.9,Odumeru Joseph A.2,Griffiths Mansel W.102,Skurnik Mikael511ORCID

Affiliation:

1. Laboratory Services Division, University of Guelph, Guelph, Ontario, Canada

2. Department of Food Science, University of Guelph, Guelph, Ontario, Canada

3. Department of Clinical Sciences Lund, Infection Medicine, Lund University, Lund, Sweden

4. Institute of Biotechnology and Department of Biosciences, University of Helsinki, Helsinki, Finland

5. Department of Bacteriology and Immunology, Medicum, and Research Programs Unit, Immunobiology, University of Helsinki, Helsinki, Finland

6. Department of Pathobiology, University of Guelph, Guelph, Ontario, Canada

7. Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario, Canada

8. Applied Sciences, University of Northumbria, Newcastle upon Tyne, United Kingdom

9. National Microbiology Laboratory at Guelph, Public Health Agency of Canada, Guelph, Ontario, Canada

10. Canadian Research Institute for Food Safety, University of Guelph, Guelph, Ontario, Canada

11. Division of Clinical Microbiology, Helsinki University Hospital, HUSLAB, Helsinki, Finland

Abstract

ABSTRACT Bacteriophages present huge potential both as a resource for developing novel tools for bacterial diagnostics and for use in phage therapy. This potential is also valid for bacteriophages specific for Yersinia enterocolitica . To increase our knowledge of Y. enterocolitica -specific phages, we characterized two novel yersiniophages. The genomes of the bacteriophages vB_YenM_TG1 (TG1) and vB_YenM_ϕR1-RT (ϕR1-RT), isolated from pig manure in Canada and from sewage in Finland, consist of linear double-stranded DNA of 162,101 and 168,809 bp, respectively. Their genomes comprise 262 putative coding sequences and 4 tRNA genes and share 91% overall nucleotide identity. Based on phylogenetic analyses of their whole-genome sequences and large terminase subunit protein sequences, a genus named Tg1virus within the family Myoviridae is proposed, with TG1 and ϕR1-RT (R1RT in the ICTV database) as member species. These bacteriophages exhibit a host range restricted to Y. enterocolitica and display lytic activity against the epidemiologically significant serotypes O:3, O:5,27, and O:9 at and below 25°C. Adsorption analyses of lipopolysaccharide (LPS) and OmpF mutants demonstrate that these phages use both the LPS inner core heptosyl residues and the outer membrane protein OmpF as phage receptors. Based on RNA sequencing and quantitative proteomics, we also demonstrate that temperature-dependent infection is due to strong repression of OmpF at 37°C. In addition, ϕR1-RT was shown to be able to enter into a pseudolysogenic state. Together, this work provides further insight into phage-host cell interactions by highlighting the importance of understanding underlying factors which may affect the abundance of phage host receptors on the cell surface. IMPORTANCE Only a small number of bacteriophages infecting Y. enterocolitica , the predominant causative agent of yersiniosis, have been previously described. Here, two newly isolated Y. enterocolitica phages were studied in detail, with the aim of elucidating the host cell receptors required for infection. Our research further expands the repertoire of phages available for consideration as potential antimicrobial agents or as diagnostic tools for this important bacterial pathogen.

Funder

Ontario Ministry of Agriculture, Food Safety Research Program

Academy of Finland

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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