Jonathan Chaires
Affiliations: | University of Louisville, Louisville, KY, United States |
Area:
Biophysical ChemistryWebsite:
https://louisville.edu/bucksforbrains/faculty/chairesGoogle:
"Jonathan Chaires"Mean distance: 9.06 | S | N | B | C | P |
Parents
Sign in to add mentorHarry F. Noller | research assistant | UC Santa Cruz | ||
Gerson Kegeles | grad student | 1978 | University of Connecticut | |
(The Association of E. Coli Ribosomal Subunits: Relaxation Kinetic and Zone Sedimentation Studies) | ||||
Donald Morris Crothers | post-doc | Yale |
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Publications
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Monsen RC, Chua EYD, Hopkins JB, et al. (2023) Structure of a 28.5 kDa duplex-embedded G-quadruplex system resolved to 7.4 Å resolution with cryo-EM. Nucleic Acids Research |
Monsen RC, Trent JO, Chaires JB. (2022) G-quadruplex DNA: A Longer Story. Accounts of Chemical Research |
Monsen RC, Maguire JM, DeLeeuw LW, et al. (2022) Drug discovery of small molecules targeting the higher-order hTERT promoter G-quadruplex. Plos One. 17: e0270165 |
Monsen RC, DeLeeuw LW, Dean WL, et al. (2022) Long promoter sequences form higher-order G-quadruplexes: an integrative structural biology study of c-Myc, k-Ras and c-Kit promoter sequences. Nucleic Acids Research. 50: 4127-4147 |
DeLeeuw LW, Monsen RC, Petrauskas V, et al. (2021) POT1 stability and binding measured by fluorescence thermal shift assays. Plos One. 16: e0245675 |
Monsen RC, Chakravarthy S, Dean WL, et al. (2021) The solution structures of higher-order human telomere G-quadruplex multimers. Nucleic Acids Research |
Chaires JB, Gray RD, Dean WL, et al. (2020) Human POT1 unfolds G-quadruplexes by conformational selection. Nucleic Acids Research |
Monsen RC, DeLeeuw L, Dean WL, et al. (2020) The hTERT core promoter forms three parallel G-quadruplexes. Nucleic Acids Research |
Mestre-Fos S, Penev PI, Richards JC, et al. (2019) Profusion of G-quadruplexes on both subunits of metazoan ribosomes. Plos One. 14: e0226177 |
Dean WL, Gray RD, DeLeeuw L, et al. (2019) Putting a New Spin of G-Quadruplex Structure and Binding by Analytical Ultracentrifugation. Methods in Molecular Biology (Clifton, N.J.). 2035: 87-103 |