An ultraviolet-inducible adenosine-adenosine cross-link reflects the catalytic structure of the Tetrahymena ribozyme
Author:
Publisher
American Chemical Society (ACS)
Subject
Biochemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/bi00475a027
Reference45 articles.
1. Investigation of the tertiary folding ofEscherichia coli16s RNA byin situintra-RNA crosslinking within 30S ribosomal subunits
2. Deletion of nonconserved helices near the 3' end of the rRNA intron of Tetrahymena thermophila alters self-splicing but not core catalytic activity.
3. Identification of a site on 23S ribosomal RNA located at the peptidyl transferase center.
4. RNA as an RNA Polymerase: Net Elongation of an RNA Primer Catalyzed by the Tetrahymena Ribozyme
5. Ultraviolet light-induced crosslinking reveals a unique region of local tertiary structure in potato spindle tuber viroid and HeLa 5S RNA.
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1. Dithiothreitol (DTT) Acts as a Specific, UV-inducible Cross-linker in Elucidation of Protein–RNA Interactions*;Molecular & Cellular Proteomics;2015-12
2. The Long-Range P3 Helix of the Tetrahymena Ribozyme Is Disrupted during Folding between the Native and Misfolded Conformations;Journal of Molecular Biology;2013-08
3. The Right Angle (RA) Motif: A Prevalent Ribosomal RNA Structural Pattern Found in Group I Introns;Journal of Molecular Biology;2012-11
4. RNA self-cleavage activated by ultraviolet light-induced oxidation;Nucleic Acids Research;2011-10-11
5. Understanding Catalysis of Phosphate-Transfer Reactions by the Large Ribozymes;CHEM-EUR J;2011
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