Carlos Gonzalez
Affiliations: | Physical and Chemical Properties | National Institute of Standards and Technology, Gaithersburg, MD, United States |
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Publications
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Abou Assi H, Garavís M, González C, et al. (2018) i-Motif DNA: structural features and significance to cell biology. Nucleic Acids Research |
Dans PD, Ivani I, Hospital A, et al. (2017) How accurate are accurate force-fields for B-DNA? Nucleic Acids Research |
Assi HA, Harkness RW, Martin-Pintado N, et al. (2016) Stabilization of i-motif structures by 2'-β-fluorination of DNA. Nucleic Acids Research |
Garavís M, Escaja N, Gabelica V, et al. (2015) Centromeric Alpha-Satellite DNA Adopts Dimeric i-Motif Structures Capped by AT Hoogsteen Base Pairs. Chemistry (Weinheim An Der Bergstrasse, Germany). 21: 9816-24 |
Rossetti G, Dans PD, Gomez-Pinto I, et al. (2015) The structural impact of DNA mismatches. Nucleic Acids Research. 43: 4309-21 |
Benabou S, Aviñó A, Eritja R, et al. (2014) Fundamental aspects of the nucleic acid i-motif structures Rsc Advances. 4: 26956-26980 |
Escaja N, Viladoms J, Garavís M, et al. (2012) A minimal i-motif stabilized by minor groove G:T:G:T tetrads. Nucleic Acids Research. 40: 11737-47 |
Coskuner O, Bergeron DE, Rincon L, et al. (2009) Identification of active sites of biomolecules II: Saccharide and transition metal ion in aqueous solution. The Journal of Physical Chemistry. A. 113: 2491-9 |
Coskuner O, Bergeron DE, Rincon L, et al. (2008) Glycosidic linkage conformation of methyl-alpha-mannopyranoside. The Journal of Chemical Physics. 129: 045102 |
Coskuner O, Bergeron DE, Rincon L, et al. (2008) Identification of active sites of biomolecules. 1. Methyl-alpha-mannopyranoside and Fe(III). The Journal of Physical Chemistry. A. 112: 2940-7 |