tRNA dysregulation and disease
Author:
Publisher
Springer Science and Business Media LLC
Subject
Genetics (clinical),Genetics,Molecular Biology
Link
https://www.nature.com/articles/s41576-022-00501-9.pdf
Reference131 articles.
1. Hoagland, M. B., Stephenson, M. L., Scott, J. F., Hecht, L. I. & Zamecick, P. C. A soluble ribonucleic acid intermediate in protein synthesis. J. Biol. Chem. 231, 241–257 (1958). This paper describes the discovery of tRNAs.
2. Holley, R. W. et al. Structure of a ribonucleic acid. Science 147, 1462–1465 (1965). This paper describes the structure of tRNAs and the finding of a modified base (inosine).
3. Crick, F. H. C. Codon–anticodon pairing: the wobble hypothesis. J. Mol. Biol. 19, 548–555 (1966). This paper describes the possibility of non-canonical (wobble) pairing of the anticodon loop with its cognate codon sequence on mRNAs.
4. Chou, H.-J., Donnard, E., Gustafsson, H. T., Garber, M. & Rando, O. J. Transcriptome-wide analysis of roles for tRNA modifications in translational regulation. Mol. Cell 68, 978–992.e4 (2017).
5. De Crécy-Lagard, V. et al. Matching tRNA modifications in humans to their known and predicted enzymes. Nucleic Acids Res. 47, 2143–2159 (2019).
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