Activation of a Vibrio cholerae CBASS anti-phage system by quorum sensing and folate depletion
Severin, G. B.; Ramliden, M. S.; Ford, K. C.; Van Alst, A. J.; Sanath-Kumar, R.; Decker, K. A.; Hsueh, B. Y.; Yoon, S. H.; Demey, L. M.; O'Hara, B. J.; Rhoades, C. R.; DiRita, V. J.; Ng, W. L.; Waters, C. M.
Show abstract
A major challenge faced by bacteria is infection by bacteriophage (phage). Abortive infection is one strategy for combating phage in which an infected cell kills itself to limit phage replication, thus protecting neighboring kin. One class of abortive infection systems is the cyclic oligonucleotide based anti-phage signaling system (CBASS) which relies on two core enzymatic activities; an oligo-nucleotide cyclase that is activated following phage infection and a cyclic-oligo-nucleotide sensitive effector whose activity kills the infected cell. However, the mechanisms behind the deployment and activation of these lethal CBASS systems prior-to and following infection have largely remained a mystery. While exploring unique genomic features of the current pandemic Vibrio cholerae biotype El Tor for clues underlying its pandemic success we found its CBASS was spuriously activated by the folate biosynthesis inhibitor sulfamethoxazole, but only after the population had reached a high-cell density. This population density dependent activity revealed that transcription of both the oligo-nucleotide cyclase, dncV, and the CBASS phospholipase effector, capV, is enhanced at high-cell density by quorum sensing. Together, these results demonstrate that the V. cholerae CBASS is deployed when the environment is densely populated and activated in response to a perturbation in folate biosynthesis. SignificanceTo counteract infection with phage, bacteria have evolved a myriad of molecular defense systems. Some of these systems initiate a process called abortive infection, in which the infected cell kills itself to prevent phage propagation. However, such systems must be inhibited in the absence of phage infection to prevent spurious death of the host. Here we show that the cyclic oligonucleotide based anti-phage signaling system (CBASS) accomplishes this by sensing intracellular folate molecules and only expressing this system in a group. These results enhance our understanding of the evolution of the 7th V. cholerae pandemic and more broadly how bacteria defend themselves against phage infection.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Evolution of a cis-acting SNP that controls Type VI Secretion in Vibrio cholerae 98%
- The Vibrio cholerae quorum-sensing protein VqmA integrates cell density, environmental, and host-derived cues into the control of virulence 97%
- High levels of cyclic diguanylate interfere with beneficial bacterial colonization 96%
Similar papers in this journal
- Vibrio Cholerae Adapts To Sessile And Motile Lifestyles By Cyclic Di-Gmp Regulation Of Cell Shape 95%
- One gene, multiple ecological strategies: a biofilm regulator is a capacitor for sustainable diversity 95%
- The type IV pilin PilA couples surface attachment and cell cycle initiation in Caulobacter crescentus 95%
Similar papers in this journal
- Genetic dissection of the fermentative and respiratory contributions supporting Vibrio cholerae hypoxic growth 98%
- DNA repair is essential for Vibrio cholerae growth on Thiosulfate-Citrate-Bile Salts-Sucrose (TCBS) Medium 97%
- Phage infection restores PQS signaling and enhances growth of a Pseudomonas aeruginosa lasI quorum-sensing mutant 96%
Similar papers in this journal
- Dominant Vibrio cholerae phage exhibits lysis inhibition sensitive to disruption by a defensive phage satellite 97%
- Phage resistance profiling identifies new genes required for biogenesis and modification of the corynebacterial cell envelope 96%
- A biofilm-tropic Pseudomonas aeruginosa bacteriophage uses the exopolysaccharide Psl as receptor 96%
Similar papers in this journal
- Toxin/Antitoxin Systems Induce Persistence and Work in Concert with Restriction/Modification Systems to Inhibit Phage 95%
- A quorum sensing-regulated type VI secretion system containing multiple nonredundant VgrG proteins is required for interbacterial competition in Chromobacterium violaceum 95%
- Bile acids activate the antibacterial T6SS1 in the gut pathogen Vibrio parahaemolyticus 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.