Survey of Pseudomonas aeruginosa and its phages: de novo peptide sequencing as a novel tool to assess the diversity of worldwide collected viruses

peer-reviewed · Environmental Microbiology · 2009

peer-reviewed · Environmental Microbiology · 2009. Pieter‐Jan Ceyssens et al. A collection of 15 newly isolated (bacterio)phages infecting the opportunistic pathogen Pseudomonas…
Date 2009-05-01
Type peer-reviewed
Venue Environmental Microbiology
Publisher Wiley
Contribution downstream-application
DOI 10.1111/j.1462-2920.2008.01862.x
Citations (OpenAlex) 43

Abstract

A collection of 15 newly isolated (bacterio)phages infecting the opportunistic pathogen Pseudomonas aeruginosa was established to investigate their global diversity and potential in phage therapy. These phages were sampled in 14 different countries traversing four continents, from both natural environments and hospital sewage. They all display unique DNA and protein profiles and cluster morphologically into six groups within the three major families of the Caudovirales. Extensive host range studies on a library of 122 AFLP-genotyped clinical P. aeruginosa strains (of which 49 were newly isolated at the University Hospital of Leuven, Belgium) showed that the phages lysed 87% of the strains. Infection analysis of outer membrane mutants identified 10 phages as type IV pili-dependent. More detailed information about the evolutionary relatedness of the phages was gathered by de novo peptide sequencing of major virion proteins using tandem Matrix-Assisted Laser Desorption/Ionization Time of Flight technology. Applying this technique for the first time to viruses, seven groups of closely related phages were identified without the need of prior knowledge of genome content and/or electron microscopic imaging. This study demonstrates both the epidemic population structure of P. aeruginosa and the global spread of P. aeruginosa phage species, and points at the resistance of two clinically predominant, widespread P. aeruginosa strains against phage attack.

Authors

  1. Pieter‐Jan Ceyssens · KU Leuven
  2. Jean‐Paul Noben · Hasselt University, Transnational University Limburg
  3. Hans‐W. Ackermann · Université Laval
  4. Jan Verhaegen · KU Leuven
  5. Daniel De Vos · Queen Astrid Military Hospital
  6. Jean‐Paul Pirnay · Queen Astrid Military Hospital
  7. Maia Merabishvili · Ghent University Hospital
  8. Mario Vaneechoutte · Ghent University Hospital
  9. Andrew Chibeu · KU Leuven
  10. Guido Volckaert · KU Leuven
  11. Rob Lavigne · KU Leuven

Methods and tools

  • Pseudomonas aeruginosa phage diversity: Used de novo peptide sequencing of structural proteins to group 15 newly isolated Pseudomonas aeruginosa phages from 14 countries and assess their relatedness.

Cites (5)

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