Abstract
Under stressful conditions, bacterial RelA-SpoT Homolog (RSH) enzymes synthesize the alarmone (p)ppGpp, a nucleotide second messenger. (p)ppGpp rewires bacterial transcription and metabolism to cope with stress, and, at high concentrations, inhibits the process of protein synthesis and bacterial growth to save and redirect resources until conditions improve. Single-domain small alarmone synthetases (SASs) are RSH family members that contain the (p)ppGpp synthesis (SYNTH) domain, but lack the hydrolysis (HD) domain and regulatory C-terminal domains of the long RSHs such as Rel, RelA, and SpoT. We asked whether analysis of the genomic context of SASs can indicate possible functional roles. Indeed, multiple SAS subfamilies are encoded in widespread conserved bicistronic operon architectures that are reminiscent of those typically seen in toxin−antitoxin (TA) operons. We have validated five of these SASs as being toxic (toxSASs), with neutralization by the protein products of six neighboring antitoxin genes. The toxicity ofCellulomonas marinatoxSAS FaRel is mediated by the accumulation of alarmones ppGpp and ppApp, and an associated depletion of cellular guanosine triphosphate and adenosine triphosphate pools, and is counteracted by its HD domain-containing antitoxin. Thus, the ToxSAS–antiToxSAS system with its multiple different antitoxins exemplifies how ancient nucleotide-based signaling mechanisms can be repurposed as TA modules during evolution, potentially multiple times independently.
Funder
Carl Tryggers Stiftelse för Vetenskaplig Forskning
Vetenskapsrådet
Molecular Infection Medicine Sweden
Ragnar Söderbergs stiftelse
Kempestiftelserna
Jeanssons Stiftelser
Umeå Universitet Insamlingsstiftelsen för medicinsk forskning
Umeå Centre for Microbial Research (UCMR) gender policy programme
RCUK | Biotechnology and Biological Sciences Research Council
Czech ministry of Education and Sport via JPIAMR
The European Union from the European Regional Development Fund through the Centre of Excellence in Molecular Cell Engineering
Eesti Teadusagentuur
Fonds National de Recherche Scientifique
Publisher
Proceedings of the National Academy of Sciences
Cited by
83 articles.
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