| Literature DB >> 24552250 |
Ricardo Lucas1, Pablo Peñalver, Irene Gómez-Pinto, Empar Vengut-Climent, Lewis Mtashobya, Jonathan Cousin, Olivia S Maldonado, Violaine Perez, Virginie Reynes, Anna Aviñó, Ramón Eritja, Carlos González, Bruno Linclau, Juan C Morales.
Abstract
Carbohydrate-aromatic interactions are highly relevant for many biological processes. Nevertheless, experimental data in aqueous solution relating structure and energetics for sugar-arene stacking interactions are very scarce. Here, we evaluate how structural variations in a monosaccharide including carboxyl, N-acetyl, fluorine, and methyl groups affect stacking interactions with aromatic DNA bases. We find small differences on stacking interaction among the natural carbohydrates examined. The presence of fluorine atoms within the pyranose ring slightly increases the interaction with the C-G DNA base pair. Carbohydrate hydrophobicity is the most determinant factor. However, gradual increase in hydrophobicity of the carbohydrate does not translate directly into a steady growth in stacking interaction. The energetics correlates better with the amount of apolar surface buried upon sugar stacking on top of the aromatic DNA base pair.Entities:
Mesh:
Substances:
Year: 2014 PMID: 24552250 DOI: 10.1021/jo402700y
Source DB: PubMed Journal: J Org Chem ISSN: 0022-3263 Impact factor: 4.354