Host exonuclease SbcB and a phage-encoded SSB-like protein control activation of the DRT10 reverse transcriptase defense system
Sanchez-Nieto, E.; Wilkinson, M. E.; Millan, V.; Wenardy, C.; Cabrerizo, D.; Martinez-Abarca, F.; Toro, N.
Show abstract
Defense-associated reverse transcriptases (DRTs) employ diverse mechanisms of cDNA synthesis to protect bacteria against phage infection, yet their full diversity and regulatory logic remain poorly understood. Here we provide a mechanistic characterization of UG17 (DRT10), a class-2 system within the UG/Abi reverse transcriptase lineage, classifying it into three phylogenetically and architecturally distinct subtypes with subtype-specific ncRNAs and experimentally validating its role in phage defense. DRT10 operates as a tripartite module, comprising a structured ncRNA, a SLATT effector, and an RT that catalyzes processive synthesis of DNA containing 7 nt tandem repeats. The tandem-repeat cDNA intermediate accumulates as both first- and second-strand species. SbcB suppresses DRT10-mediated toxicity and appears to selectively degrade the second strand under basal conditions, while phage infection correlates with enhanced first-strand accumulation. A phage-encoded protein with predicted SSB-like architecture and a conserved C-terminal tip motif is required for efficient DRT10 activation during infection. Together, these findings establish DRT10 as a surveillance system whose activation threshold is jointly controlled by constitutive cDNA synthesis, host exonuclease activity, and a phage-encoded SSB-like trigger that perturbs host ssDNA metabolism. We propose a model in which accumulation of DRT10-derived cDNA triggers activation of the SLATT transmembrane effector to initiate immune defense.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- RNase III-mediated processing of a trans-acting bacterial sRNA and its cis-encoded antagonist 97%
- NusG is an intrinsic transcription termination factor that stimulates motility and coordinates global gene expression with NusA 96%
- A chimeric nuclease substitutes CRISPR-Cas: A phage weaponizes laterally acquired specificity to destroy subviral parasites 96%
Similar papers in this journal
- MAPS integrates overlooked regulation of actin-targeting effector SteC into the virulence control network of Salmonella small RNA PinT 96%
- Infection with novel Bacteroides phage BV01 alters host transcriptome and bile acid metabolism in a common human gut microbe 95%
- Virus-encoded glycosyltransferases hypermodify DNA with diverse glycans 94%
Similar papers in this journal
- Interaction Between Transcribing RNA Polymerase and Topoisomerase I Prevents R-loop Formation in E. coli 96%
- High-throughput interrogation of programmed ribosomal frameshifting in human cells 95%
- Vibrio cholerae Type VI Secretion System Auxiliary Cluster 3 is a Pandemic-associated Mobile Genetic Element 95%
Similar papers in this journal
"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.