4.5 Article

Comprehensive characterization of mRNAs associated with yeast cytosolic aminoacyl-tRNA synthetases

Journal

RNA BIOLOGY
Volume 18, Issue 12, Pages 2605-2616

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/15476286.2021.1935116

Keywords

Aminoacyl tRNA synthetases; RNA-binding proteins; RIP-seq; post-transcriptional regulation; mRNA; yeast

Funding

  1. Israel Science Foundation [258/18]
  2. Israel Michigan University Partnership
  3. Jacobs fellowship
  4. National Institute of General Medical Sciences [GM136441]

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This study revealed that aminoacyl-tRNA synthetases not only play a role in tRNA charging but also regulate mRNA expression post-transcriptionally, potentially utilizing RNA elements to coordinate mRNA expression based on amino acid availability.
Aminoacyl-tRNA synthetases (aaRSs) are a conserved family of enzymes with an essential role in protein synthesis: ligating amino acids to cognate tRNA molecules for translation. In addition to their role in tRNA charging, aaRSs have acquired non-canonical functions, including post-transcriptional regulation of mRNA expression. Yet, the extent and mechanisms of these post-transcriptional functions are largely unknown. Herein, we performed a comprehensive transcriptome analysis to define the mRNAs that are associated with almost all aaRSs present in S. cerevisiae cytosol. Nineteen (out of twenty) isogenic strains of GFP-tagged cytosolic aaRSs were subjected to immunoprecipitation with anti-GFP beads along with an untagged control. mRNAs associated with each aaRS were then identified by RNA-seq. The extent of mRNA association varied significantly between aaRSs, from MetRS in which none appeared to be statistically significant, to PheRS that binds hundreds of different mRNAs. Interestingly, many target mRNAs are bound by multiple aaRSs, suggesting co-regulation by this family of enzymes. Gene Ontology analyses for aaRSs with a considerable number of target mRNAs discovered an enrichment for pathways of amino acid metabolism and of ribosome biosynthesis. Furthermore, sequence and structure motif analysis revealed for some aaRSs an enrichment for motifs that resemble the anticodon stem loop of cognate tRNAs. These data suggest that aaRSs coordinate mRNA expression in response to amino acid availability and may utilize RNA elements that mimic their canonical tRNA binding partners.

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