tRNA Modification Landscapes in Streptococci: Shared Losses and Clade-Specific Adaptations
Tsui, H.-C. T.; Chan, C.-K.; Yuan, Y.; Elias, R.; Sun, J.; Marchand, V.; Jaroch, M.; Sun, G.; Manzoor, I.; Kutchuashvili, A.; Leszczynska, G.; Seaton, K.; Motorin, Y.; Rice, K. C.; Swairjo, M.; Dedon, P. C.; Winkler, M. E.; de Crecy-Lagard, V.
Show abstract
tRNA modifications are central to bacterial translational control. Here, we integrated genetics, mass spectrometry, epitranscriptomics, and comparative genomics to map the tRNA modification genes of the Gram-positive pathogens Streptococcus mutans and Streptococcus pneumoniae. Both species show a marked loss of modifications dependent on Fe-S enzymes, consistent with a broader trend of Fe-S enzyme reduction in Streptococcus central metabolism. In addition, the D, m1A, m7G, t6A, and i6A modifications were mapped in S. pneumoniae tRNAs, and we confirmed that a unique DusB1 enzyme is responsible for the insertion of all the detectable D modifications. We uncovered differences in queuosine (Q) metabolism: while S. mutans synthesizes Q de novo, S. pneumoniae instead salvages preQ and accumulates the epoxy-Q precursor, a strategy shared with multiple other Streptococci as revealed by analysis of Q pathways in 1,599 sequenced streptococcal genomes. Comparative essentiality profiling of modification genes revealed notable differences, including the essentiality of the NLJ-threonylcarbamoyladenosine (tLJA) synthesis enzyme TsaE in S. pneumoniae but not in S. mutans, which was confirmed by genetic studies. We found that suppressor mutations in asnS encoding asparaginyl-tRNA synthetase (AsnRS) restored viability to {Delta}tsaE mutants, albeit with reduced growth. Our finding highlights the functional importance of modifications in the recognition of tRNAs by aminoacyl-tRNA synthetases.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Intragenomic conflicts with plasmids and chromosomal mobile genetic elements drive the evolution of natural transformation within species 95%
- A T6SS in the coral pathogen Vibrio coralliilyticus secretes an arsenal of anti-eukaryotic effectors and contributes to virulence 95%
- EfgA is a conserved formaldehyde sensor that halts bacterial translation in response to elevated formaldehyde 94%
Similar papers in this journal
Similar papers in this journal
- Adaptation to overflow metabolism by mutations that impair tRNA modification in experimentally evolved bacteria 96%
- ABCF Protein-Mediated Resistance Shapes Bacterial Responses to antibiotics Based on their Type and Concentration 95%
- A Second Role for the Second Messenger Cyclic-di-GMP in E. coli: Arresting Cell Growth by Altering Metabolic Flow 94%
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.