Editorial: Understanding the Importance of Non-Canonical tRNA Function
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[1] P. Ivanov,et al. Fragmentation of extracellular ribosomes and tRNAs shapes the extracellular RNAome , 2020, bioRxiv.
[2] A. Grigoriev,et al. Inferring targeting modes of Argonaute-loaded tRNA fragments , 2019, RNA biology.
[3] A. Torres. Enjoy the Silence: Nearly Half of Human tRNA Genes Are Silent , 2019, Bioinformatics and biology insights.
[4] Anindya Dutta,et al. tRNA fragments (tRFs) guide Ago to regulate gene expression post-transcriptionally in a Dicer-independent manner , 2018, RNA.
[5] Paul Schimmel,et al. The emerging complexity of the tRNA world: mammalian tRNAs beyond protein synthesis , 2017, Nature Reviews Molecular Cell Biology.
[6] R. Maraia,et al. Factors That Shape Eukaryotic tRNAomes: Processing, Modification and Anticodon–Codon Use , 2017, Biomolecules.
[7] A. Kanai. Disrupted tRNA Genes and tRNA Fragments: A Perspective on tRNA Gene Evolution , 2015, Life.
[8] Suresh B. Mudunuri,et al. Meta-analysis of tRNA derived RNA fragments reveals that they are evolutionarily conserved and associate with AGO proteins to recognize specific RNA targets , 2014, BMC Biology.
[9] T. Pan,et al. A Role for tRNA Modifications in Genome Structure and Codon Usage , 2012, Cell.
[10] Steven P Gygi,et al. Angiogenin-induced tRNA fragments inhibit translation initiation. , 2011, Molecular cell.
[11] V. de Crécy-Lagard,et al. Deciphering synonymous codons in the three domains of life: Co‐evolution with specific tRNA modification enzymes , 2010, FEBS letters.