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. 2023 Aug 3;186(16):3414-3426.e16.
doi: 10.1016/j.cell.2023.07.001.

Dual pathogenicity island transfer by piggybacking lateral transduction

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Dual pathogenicity island transfer by piggybacking lateral transduction

Melissa Su Juan Chee et al. Cell. .

Abstract

Lateral transduction (LT) is the process by which temperate phages mobilize large sections of bacterial genomes. Despite its importance, LT has only been observed during prophage induction. Here, we report that superantigen-carrying staphylococcal pathogenicity islands (SaPIs) employ a related but more versatile and complex mechanism of gene transfer to drive chromosomal hypermobility while self-transferring with additional virulence genes from the host. We found that after phage infection or prophage induction, activated SaPIs form concatamers in the bacterial chromosome by switching between parallel genomic tracks in replication bubbles. This dynamic life cycle enables SaPIbov1 to piggyback its LT of staphylococcal pathogenicity island vSaα, which encodes an array of genes involved in host-pathogen interactions, allowing both islands to be mobilized intact and transferred in a single infective particle. Our findings highlight previously unknown roles of pathogenicity islands in bacterial virulence and show that their evolutionary impact extends beyond the genes they carry.

Keywords: PICIs; SaPIs; Staphylococcus aureus; concatamers; cotransduction; lateral transduction; pathogenicity islands; phages.

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Conflict of interest statement

Declaration of interests The authors declare no competing interests.

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