Skip to content
Open access

Phage proofing Pseudomonas putida uncovers novel broad-spectrum phage resistance protein Psh

Sep 2026 · bioRxiv · 0 citations · 4 references
Biology

TL;DR

Overexpression experiments show that Psh protein is secreted by this restored T1SS to confer complete phage resistance, uncover a previously uncharacterized phage defense system in P. putida based on secretion-mediated receptor masking.

Abstract

Broad-spectrum phage resistance offers an important layer of protection against bacterial fermenter crashes during biomanufacturing processes, yet the underlying mechanisms are often poorly defined or come at a fitness cost. Using experimental evolution, we generated two Pseudomonas putida strains that were resistant to at least six phage genera. Genome sequencing revealed a single frameshift deletion in each strain that restored functionality of a Type I secretion system (T1SS) ATPase. We also found strong transcriptional upregulation of a nearby protein, PP_1794, which we coin Phage shielding helix rich protein (Psh). Overexpression experiments show that Psh protein is secreted by this restored T1SS to confer complete phage resistance. When compared to wild-type P. putida KT2440, no growth or expression defects were evident, but pyoverdine production was reduced. The Psh gene and T1SS are widely distributed across Gram-negative bacteria. These findings uncover a previously uncharacterized phage defense system in P. putida based on secretion-mediated receptor masking.

Read PDF

Similar papers

Open access Sep 2026

Genome-wide overexpression screen of Pseudomonas putida phage Emajogi

Bacteriophage genomes contain large fractions of uncharacterized genes, motivating high-throughput functional screens to illuminate their roles in host interaction and cytotoxicity. Here, we performed a genome-wide overexpression assay for a Pseudomonas putida KT2440-infecting phage, Emajogi, and identified eight cytot...

Benjamin Diaz, Stephen Won, Meghana Padala et al. · 0 citations
Open access Aug 2026

Genome-guided isolation and characterization of a novel bacteriophage infecting Escherichia coli reveal a putative new genus

We have isolated and characterized a novel bacteriophage termed Jab, with lytic activity against multidrug-resistant clinical isolates of Escherichia coli. Phage Jab was identified from liquid manure by means of metagenome sequencing of a phage community enrichment using an E. coli clinical isolate ECH07 as host. The i...

Julia Oberdorfer, Jasmin Tesani, T. L. Tagliaferri et al. · 0 citations
Open access Sep 2026

Phage genomes are enriched with genes to overcome diverse bacterial immune systems

Phages and bacteria are engaged in an evolutionary arms race, where phages continually evolve new strategies to overcome bacterial defenses. To systematically investigate the functions of all genes within phage genomes, we constructed a gene deletion library of the Escherichia coli phage phiDruSM1, belonging to t...

Shinjiro Ojima, A. Azam, Kohei Kondo et al. · 0 citations
Open access Sep 2026

Systematic mapping of bacteriophage gene essentiality with HIDEN-SEQ.

The arms race of bacteriophages and their bacterial hosts has inspired major breakthroughs in biotechnology and shaped phages as fierce predators with great clinical potential to fight multidrug-resistant bacterial pathogens. However, the large amount of genes of unknown function in phage genomes remains a major obstac...

Dorentina Humolli, Damien Piel, J. Ransome et al. · 1 citation
Open access Aug 2026

Functional profiling of ESKAPE viromes uncovers resistance-limiting phage-host dynamics

A systematic ESKAPE virome resource is established, phages’ dual roles in targeting resistant pathogens and curbing resistance spread are demonstrated, and mechanistic support for phage therapy clinical application is provided.

Pengwei Li, Quan Liu, Chunfang Deng et al. · 0 citations
Open access Aug 2026

WaaL–WaaP receptor cross-talk drives phage-induced collateral sensitivity to colistin in Salmonella Pullorum

Phage therapy typically fails when bacteria rapidly evolve resistance, yet the inevitable fitness costs of escape mutants remain underexploited. In this study, an iterative and targeted phage-cocktail formulation strategy (ITPFS) was presented and developed. A potent lytic phage, PHZ055, was firstly isolated against a...

Mian-Zhi Wang, Yiwen Ren, Lei Jiang et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.