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Influence of the π–π interaction on the hydrogen bonding capacity of stacked DNA/RNA bases

The interplay between aromatic stacking and hydrogen bonding in nucleobases has been investigated via high-level quantum chemical calculations. The experimentally observed stacking arrangement between consecutive bases in DNA and RNA/DNA double helices is shown to enhance their hydrogen bonding abil...

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Detalles Bibliográficos
Autores principales: Mignon, Pierre, Loverix, Stefan, Steyaert, Jan, Geerlings, Paul
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1069514/
https://www.ncbi.nlm.nih.gov/pubmed/15788750
http://dx.doi.org/10.1093/nar/gki317
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author Mignon, Pierre
Loverix, Stefan
Steyaert, Jan
Geerlings, Paul
author_facet Mignon, Pierre
Loverix, Stefan
Steyaert, Jan
Geerlings, Paul
author_sort Mignon, Pierre
collection PubMed
description The interplay between aromatic stacking and hydrogen bonding in nucleobases has been investigated via high-level quantum chemical calculations. The experimentally observed stacking arrangement between consecutive bases in DNA and RNA/DNA double helices is shown to enhance their hydrogen bonding ability as opposed to gas phase optimized complexes. This phenomenon results from more repulsive electrostatic interactions as is demonstrated in a model system of cytosine stacked offset-parallel with substituted benzenes. Therefore, the H-bonding capacity of the N3 and O2 atoms of cytosine increases linearly with the electrostatic repulsion between the stacked rings. The local hardness, a density functional theory-based reactivity descriptor, appears to be a key index associated with the molecular electrostatic potential (MEP) minima around H-bond accepting atoms, and is inversely proportional to the electrostatic interaction between stacked molecules. Finally, the MEP minima on surfaces around the bases in experimental structures of DNA and RNA–DNA double helices show that their hydrogen bonding capacity increases when taking more neighboring (intra-strand) stacking partners into account.
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spelling pubmed-10695142005-03-24 Influence of the π–π interaction on the hydrogen bonding capacity of stacked DNA/RNA bases Mignon, Pierre Loverix, Stefan Steyaert, Jan Geerlings, Paul Nucleic Acids Res Article The interplay between aromatic stacking and hydrogen bonding in nucleobases has been investigated via high-level quantum chemical calculations. The experimentally observed stacking arrangement between consecutive bases in DNA and RNA/DNA double helices is shown to enhance their hydrogen bonding ability as opposed to gas phase optimized complexes. This phenomenon results from more repulsive electrostatic interactions as is demonstrated in a model system of cytosine stacked offset-parallel with substituted benzenes. Therefore, the H-bonding capacity of the N3 and O2 atoms of cytosine increases linearly with the electrostatic repulsion between the stacked rings. The local hardness, a density functional theory-based reactivity descriptor, appears to be a key index associated with the molecular electrostatic potential (MEP) minima around H-bond accepting atoms, and is inversely proportional to the electrostatic interaction between stacked molecules. Finally, the MEP minima on surfaces around the bases in experimental structures of DNA and RNA–DNA double helices show that their hydrogen bonding capacity increases when taking more neighboring (intra-strand) stacking partners into account. Oxford University Press 2005 2005-03-23 /pmc/articles/PMC1069514/ /pubmed/15788750 http://dx.doi.org/10.1093/nar/gki317 Text en © The Author 2005. Published by Oxford University Press. All rights reserved
spellingShingle Article
Mignon, Pierre
Loverix, Stefan
Steyaert, Jan
Geerlings, Paul
Influence of the π–π interaction on the hydrogen bonding capacity of stacked DNA/RNA bases
title Influence of the π–π interaction on the hydrogen bonding capacity of stacked DNA/RNA bases
title_full Influence of the π–π interaction on the hydrogen bonding capacity of stacked DNA/RNA bases
title_fullStr Influence of the π–π interaction on the hydrogen bonding capacity of stacked DNA/RNA bases
title_full_unstemmed Influence of the π–π interaction on the hydrogen bonding capacity of stacked DNA/RNA bases
title_short Influence of the π–π interaction on the hydrogen bonding capacity of stacked DNA/RNA bases
title_sort influence of the π–π interaction on the hydrogen bonding capacity of stacked dna/rna bases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1069514/
https://www.ncbi.nlm.nih.gov/pubmed/15788750
http://dx.doi.org/10.1093/nar/gki317
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