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1. Combining Nanopore direct RNA sequencing with genetics and mass spectrometry for analysis of T-loop base modifications across 42 yeast tRNA isoacceptors.

2. N1-Methylpseudouridine and pseudouridine modifications modulate mRNA decoding during translation.

3. Conserved 5-methyluridine tRNA modification modulates ribosome translocation.

4. Adenosine modifications impede SARS-CoV-2 RNA-dependent RNA transcription.

5. Anticodon stem-loop tRNA modifications influence codon decoding and frame maintenance during translation.

6. Studying the intersection of nucleoside modifications and SARS-CoV-2 RNA-dependent RNA transcription using an in vitro reconstituted system.

7. Conserved 5-methyluridine tRNA modification modulates ribosome translocation.

8. Direct sequencing of total Saccharomyces cerevisiae tRNAs by LC-MS/MS.

9. A humanized yeast model reveals dominant-negative properties of neuropathy-associated alanyl-tRNA synthetase mutations.

10. Nuclease P1 Digestion for Bottom-Up RNA Sequencing of Modified siRNA Therapeutics.

12. Methylated guanosine and uridine modifications in S. cerevisiae mRNAs modulate translation elongation.

13. Sequence-specific capture and concentration of viral RNA by type III CRISPR system enhances diagnostic.

14. CGG repeats trigger translational frameshifts that generate aggregation-prone chimeric proteins.

15. mRNA and tRNA modification states influence ribosome speed and frame maintenance during poly(lysine) peptide synthesis.

16. Chemical modifications to mRNA nucleobases impact translation elongation and termination.

17. Sequence-specific capture and concentration of viral RNA by type III CRISPR system enhances diagnostic.

18. The cAMP signaling pathway regulates Epe1 protein levels and heterochromatin assembly.

19. Pseudouridine synthase 7 is an opportunistic enzyme that binds and modifies substrates with diverse sequences and structures.

20. Investigating the consequences of mRNA modifications on protein synthesis using in vitro translation assays.

21. A molecular-level perspective on the frequency, distribution, and consequences of messenger RNA modifications.

22. Pseudouridinylation of mRNA coding sequences alters translation.

23. Identification and Quantification of Modified Nucleosides in Saccharomyces cerevisiae mRNAs.

24. Synthesis at the Speed of Codons.

25. Systemic RNA Interference Deficiency-1 (SID-1) Extracellular Domain Selectively Binds Long Double-stranded RNA and Is Required for RNA Transport by SID-1.

26. Ribosomes slide on lysine-encoding homopolymeric A stretches.

27. RF3:GTP promotes rapid dissociation of the class 1 termination factor.

28. The RNR motif of B. subtilis RNase P protein interacts with both PRNA and pre-tRNA to stabilize an active conformer.

29. A divalent cation stabilizes the active conformation of the B. subtilis RNase P x pre-tRNA complex: a role for an inner-sphere metal ion in RNase P.

30. Protein-precursor tRNA contact leads to sequence-specific recognition of 5' leaders by bacterial ribonuclease P.

31. NMR and XAS reveal an inner-sphere metal binding site in the P4 helix of the metallo-ribozyme ribonuclease P.

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