bioRxiv · 10.1101/2025.10.07.681051
Serine recombinases are conserved genetic markers of antiphage defense systems
Abstract
Renewed interest in phage therapy has highlighted a need to understand how bacteria subvert phage infection through antiphage defense systems. Traditionally, strategies to identify antiphage defense systems lack throughput or have limitations for bacterial species where antiphage defense systems are understudied. Herein, we developed a bioinformatic pipeline that uses a small serine recombinase to identify known and unknown antiphage defense systems. Using this approach to query reference genomes and metagenomes, we show that small serine recombinase genes are genetically linked to antiphage defense systems and serve as bait for finding these systems across diverse bacterial phyla. Using co-transcription predictions and statistical analysis of protein domain abundances, we experimentally validated our bioinformatic approach by discovering that KAP P-loop NTPases are fused to putative antiphage domains and reinforce prokaryotic Schlafen proteins as a new class of antiphage defense. Our work shows that small serine recombinases are a reliable genetic marker for the discovery of antiphage defenses across diverse bacterial phyla.
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Andersen, S. E., Kirsch, J. M., Singh, N., Garrett, S. R., Whitney, J. C., Hesselberth, J. R., Duerkop, B. A.. 2025-10-08. Serine recombinases are conserved genetic markers of antiphage defense systems. https://doi.org/10.1101/2025.10.07.681051
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