bioRxiv · 10.1101/2020.06.22.160168
Bacterial retrons encode tripartite toxin/antitoxin systems
Abstract
Retrons are genetic retroelements, commonly found in bacterial genomes and recently repurposed as genome editing tools. Their encoded reverse transcriptase (RT) produces a multi-copy single-stranded DNA (msDNA). Despite our understanding of their complex biosynthesis, the function of msDNAs and therefore, the physiological role of retrons has remained elusive. We establish that the retron-Sen2 in Salmonella Typhimurium encodes a toxin, which we have renamed as RcaT (Retron cold-anaerobic Toxin). RcaT is activated when msDNA biosynthesis is perturbed and its toxicity is higher at ambient temperatures or during anaerobiosis. The RT and msDNA form together the antitoxin unit, with the RT binding RcaT, and the msDNA enabling the antitoxin activity. Using another E. coli retron, we establish that this toxin/antitoxin function is conserved, and that RT-toxin interactions are cognate. Altogether, retrons constitute a novel family of tripartite toxin/antitoxin systems.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Bobonis, J., Mateus, A., Pfalz, B., Garcia-Santamarina, S., Galardini, M., Kobayashi, C., Stein, F., Savitski, M. M., Elfenbein, J. R., Andrews-Poymenis, H., Typas, A.. 2020-06-22. Bacterial retrons encode tripartite toxin/antitoxin systems. https://doi.org/10.1101/2020.06.22.160168
Cite the original work for its findings. Save a collection to share your selection of sources.