Atul Rangadurai
Affiliations: | Biochemistry | Duke University, Durham, NC |
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Publications
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Szekely O, Rangadurai AK, Gu S, et al. (2024) NMR measurements of transient low-populated tautomeric and anionic Watson-Crick-like G·T/U in RNA:DNA hybrids: implications for the fidelity of transcription and CRISPR/Cas9 gene editing. Nucleic Acids Research |
Szekely O, Rangadurai AK, Gu S, et al. (2023) NMR measurements of transient low-populated tautomeric and anionic Watson-Crick-like G·T/U in RNA:DNA hybrids: Implications for the fidelity of transcription and CRISPR/Cas9 gene editing. Biorxiv : the Preprint Server For Biology |
Thompson R, Carbaugh D, Nielsen J, et al. (2023) Lifetime of ground conformational state determines the activity of structured RNA. Research Square |
Gu S, Szymanski ES, Rangadurai AK, et al. (2023) Dynamic basis for dA•dGTP and dA•d8OGTP misincorporation via Hoogsteen base pairs. Nature Chemical Biology |
Rangadurai A, Shi H, Xu Y, et al. (2022) Measuring thermodynamic preferences to form non-native conformations in nucleic acids using ultraviolet melting. Proceedings of the National Academy of Sciences of the United States of America. 119: e2112496119 |
Liu B, Rangadurai A, Shi H, et al. (2021) Rapid assessment of Watson-Crick to Hoogsteen exchange in unlabeled DNA duplexes using high-power SELOPE imino H CEST. Magnetic Resonance (Gottingen, Germany). 2: 715-731 |
Liu B, Shi H, Rangadurai A, et al. (2021) A quantitative model predicts how mA reshapes the kinetic landscape of nucleic acid hybridization and conformational transitions. Nature Communications. 12: 5201 |
Fick RJ, Liu AY, Nussbaumer F, et al. (2021) Probing the Hydrogen-Bonding Environment of Individual Bases in DNA Duplexes with Isotope-Edited Infrared Spectroscopy. The Journal of Physical Chemistry. B |
Shi H, Rangadurai A, Abou Assi H, et al. (2020) Rapid and accurate determination of atomistic RNA dynamic ensemble models using NMR and structure prediction. Nature Communications. 11: 5531 |
Abou Assi H, Rangadurai AK, Shi H, et al. (2020) 2'-O-Methylation can increase the abundance and lifetime of alternative RNA conformational states. Nucleic Acids Research |