Influence of 5-Fluorination, 2′-Fluorination, and 2′-Stereochemical Inversion on the Structure and Glycosidic Bond Stability of Protonated Canonical Cytidine Nucleosides
ORAL
Abstract
*This work was supported by the National Science Foundation grant numbers OISE‑0730072 and OISE‑1357887 for international travel and IRMPD experiments, DBI‑0922819 for the Bruker amaZon ETD QIT MS, and CHE‑1709789 for all other research costs. This work is part of the research program at FOM, which is financially supported by the Nederlandse Organisatie voor Wetenschappelijk Onderzoek (NWO).
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Publication: "Influence of 5-Fluorination, 2'-Fluorination, and 2'-Stereochemical Inversion on the Structure and Glycosidic Bond Stability of Protonated Canonical Cytidine Nucleosides", Z.J. Devereaux, N.N. Mikawy, H.A. Roy, L/A. Hamlow, C.C. He, Y. zhu, E.O. Soley, N.A. Cunningham, G. Berden, J. Oomens, and M.T. Rodgers, Phys. Chem. Chem. Phys. manuscript in preparation.
Comparisons will be made to data published in the following works.
"N3 and O2 Protonated Tautomeric Conformations of 2′-Deoxycytidine and Cytidine: Coexist in the Gas Phase", R.R. Wu, B. Yang, C.E. Frieler, G. Berden, J. Oomens, M.T. Rodgers, J. Phys. Chem. B 119, 5773–5784 (2015).
"Influence of 2'-Fluoro Modification on N-Glycosidic Bond Stabilities and Gas-Phase Ion Structures of Protonated Pyrimidine Nucleosides", Z.J. Devereaux, H.A. Roy, C.C. He, Y. Zhu, N.A. Cunningham, L.A. Hamlow, G. Berden, J. Oomens, M.T. Rodgers, J. Fluorine Chem. 219, 10-22 (2019).
"Gas-Phase Structures of Protonated Arabino Nucleosides", L.A. Hamlow, C.C. He, Z.J. Devereaux, H.A. Roy, N.A. Cunningham, E.O. Soley, J.K. Lee, G. Berden, J. Oomens, and M. T. Rodgers, Int. J. Mass Spectrom. 438, 124-134 (2019).
Presenters
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Mary T Rodgers
- Wayne State University