Pirating conserved phage mechanisms promotes promiscuous staphylococcal pathogenicity island transfer
Author(s)
Type
Journal Article
Abstract
Targeting conserved and essential processes is a successful strategy to combat enemies. Remarkably, the clinically important Staphylococcus aureus pathogenicity islands (SaPIs) use this tactic to spread in nature. SaPIs reside passively in the host chromosome, under the control of the SaPI-encoded master repressor, Stl. It has been assumed that SaPI de-repression is effected by specific phage proteins that bind to Stl, initiating the SaPI cycle. Different SaPIs encode different Stl repressors, so each targets a specific phage protein for its de-repression. Broadening this narrow vision, we report here that SaPIs ensure their promiscuous transfer by targeting conserved phage mechanisms. This is accomplished because the SaPI Stl repressors have acquired different domains to interact with unrelated proteins, encoded by different phages, but in all cases performing the same conserved function. This elegant strategy allows intra- and inter-generic SaPI transfer, highlighting these elements as one of nature's most fascinating subcellular parasites.
Date Issued
2017-08-08
Date Acceptance
2017-08-07
Citation
eLife, 2017, 6
ISSN
2050-084X
Publisher
eLife Sciences Publications Ltd
Journal / Book Title
eLife
Volume
6
Copyright Statement
© Copyright Bowring et al. Thisarticle is distributed under theterms of the Creative Commons Attribution License, which permits unrestricted use and redistribution provided that the original author and source are credited.
Identifier
https://www.ncbi.nlm.nih.gov/pubmed/28826473
PII: 26487
Subjects
PICIs
SaPIs
Staphylococcus aureus
bacteriophage
gene transfer
infectious disease
microbiology
pathogenicity island
Gene Expression Regulation, Bacterial
Gene Transfer, Horizontal
Genomic Islands
Host-Parasite Interactions
Interspersed Repetitive Sequences
Repressor Proteins
Staphylococcus Phages
Staphylococcus aureus
Transduction, Genetic
Viral Proteins
Publication Status
Published
Coverage Spatial
England
Article Number
e26487