Nucleic Acids Research · 2012 · 61 citations · 64 references
BiosynthesisSystems BiologyRnase IiNatural SciencesProtein BiosynthesisRna Structure PredictionMolecular BiologyDna ReplicationEscherichia ColiRnase PhRnase TMicrobiologyGene TranscriptionGene ExpressionMedicineRna ProcessingProtein Synthesis
Here we demonstrate a new regulatory mechanism for tRNA processing in Escherichia coli whereby RNase T and RNase PH, the two primary 3' → 5' exonucleases involved in the final step of 3'-end maturation, compete with poly(A) polymerase I (PAP I) for tRNA precursors in wild-type cells. In the absence of both RNase T and RNase PH, there is a >30-fold increase of PAP I-dependent poly(A) tails that are ≤10 nt in length coupled with a 2.3- to 4.2-fold decrease in the level of aminoacylated tRNAs and a >2-fold decrease in growth rate. Only 7 out of 86 tRNAs are not regulated by this mechanism and are also not substrates for RNase T, RNase PH or PAP I. Surprisingly, neither PNPase nor RNase II has any effect on tRNA poly(A) tail length. Our data suggest that the polyadenylation of tRNAs by PAP I likely proceeds in a distributive fashion unlike what is observed with mRNAs.
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New method for generating deletions and gene replacements in Escherichia coli
Carol M. Hamilton, Martí Aldea, B K Washburn et al. · Journal of Bacteriology · 1989 · 683 citations · Full text
A New Yeast Poly(A) Polymerase Complex Involved in RNA Quality Control
Štěpánka Vaňáčová, Jeannette Wolf, Georges Martín et al. · PLoS Biology · 2005 · 564 citations · Full text
A DEAD-box RNA helicase in the Escherichia coli RNA degradosome
Béatrice Py, Christopher F. Higgins, Henry Krisch et al. · Nature · 1996 · 545 citations
Dead-box Rna Helicase, Rna Structure Prediction, Rna Biology +6