Dynamic tRNA modification programs align codon usage with growth-phase-specific gene expression in Pseudomonas aeruginosa
Frommeyer Y, Sun J, Wu J, Kennepohl B, Witte J, Gomez N, Battermann J, Becker L, Cetraro P, Verstraten R, Tomasch J, Pich A, Depledge D, Dedon P, Häussler S
Erschienen in
Proceedings of the National Academy of Sciences of the United States of America: Volume 123, Issue 40, Page e2615985123
Abstract
Post-transcriptional transfer RNA (tRNA) modifications dynamically regulate translational capacity, yet whether the tRNA epitranscriptome is temporally coordinated with gene expression programs during bacterial growth remains unknown. Here, we combine time-resolved nanopore tRNA sequencing, liquid chromatography-tandem mass spectrometry modification profiling, transcriptomics, and proteomics across the Pseudomonas aeruginosa PA14 growth cycle to show that tRNA-modifying enzymes, the corresponding tRNA modifications, and modification-dependent genes are expressed in a coordinated temporal cascade. GidA-dependent 5-methylaminomethyl-2-thiouridine (mnm(5)s(2)U) modifications exemplify this program: GidA expression peaks during early growth, followed by rising mnm(5)s(2)U levels coinciding with maximal expression of genes enriched in rare AGA and UUA codons, with a concomitant enrichment of virulence-associated functions. This sequential pattern is consistent with a feedforward architecture in which the modification machinery acts in advance of translational demands. This mechanism is especially relevant for a set of horizontally acquired genes, suggesting that temporally programmed tRNA epitranscriptomic remodeling may help bridge local codon usage deviations between horizontally acquired genes and the core translational context.
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