Bacterial retrons encode phage-defending tripartite toxin–antitoxin systems

抗毒素 生物 逆转录酶 原噬菌体 毒素 遗传学 微生物学 噬菌体 基因 大肠杆菌 核糖核酸
作者
Jacob Bobonis,Karin Mitosch,André Mateus,Nicolai Karcher,George Kritikos,Joel Selkrig,Matylda Zietek,Vivian Monzon,Birgit Pfalz,Sarela García‐Santamarina,Marco Galardini,Anna Sueki,Callie Kobayashi,Frank Stein,Alex Bateman,Georg Zeller,Mikhail M. Savitski,Johanna R. Elfenbein,Helene Andrews‐Polymenis,Athanasios Typas
出处
期刊:Nature [Springer Nature]
卷期号:609 (7925): 144-150 被引量:90
标识
DOI:10.1038/s41586-022-05091-4
摘要

Retrons are prokaryotic genetic retroelements encoding a reverse transcriptase that produces multi-copy single-stranded DNA1 (msDNA). Despite decades of research on the biosynthesis of msDNA2, the function and physiological roles of retrons have remained unknown. Here we show that Retron-Sen2 of Salmonella enterica serovar Typhimurium encodes an accessory toxin protein, STM14_4640, which we renamed as RcaT. RcaT is neutralized by the reverse transcriptase–msDNA antitoxin complex, and becomes active upon perturbation of msDNA biosynthesis. The reverse transcriptase is required for binding to RcaT, and the msDNA is required for the antitoxin activity. The highly prevalent RcaT-containing retron family constitutes a new type of tripartite DNA-containing toxin–antitoxin system. To understand the physiological roles of such toxin–antitoxin systems, we developed toxin activation–inhibition conjugation (TAC-TIC), a high-throughput reverse genetics approach that identifies the molecular triggers and blockers of toxin–antitoxin systems. By applying TAC-TIC to Retron-Sen2, we identified multiple trigger and blocker proteins of phage origin. We demonstrate that phage-related triggers directly modify the msDNA, thereby activating RcaT and inhibiting bacterial growth. By contrast, prophage proteins circumvent retrons by directly blocking RcaT. Consistently, retron toxin–antitoxin systems act as abortive infection anti-phage defence systems, in line with recent reports3,4. Thus, RcaT retrons are tripartite DNA-regulated toxin–antitoxin systems, which use the reverse transcriptase–msDNA complex both as an antitoxin and as a sensor of phage protein activities. Retron-Sen2 of Salmonella Typhimurium encodes a toxin and a reverse transcriptase, which, together with the Sen2 multi-copy single-stranded DNA synthesized by the reverse transcriptase make up a tripartite toxin–antitoxin system that functions in anti-phage defence.
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