2015
DOI: 10.1002/open.201402132
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The Role of Aromaticity, Hybridization, Electrostatics, and Covalency in Resonance-Assisted Hydrogen Bonds of Adenine-Thymine (AT) Base Pairs and Their Mimics

Abstract: Hydrogen bonds play a crucial role in many biochemical processes and in supramolecular chemistry. In this study, we show quantum chemically that neither aromaticity nor other forms of π assistance are responsible for the enhanced stability of the hydrogen bonds in adenine–thymine (AT) DNA base pairs. This follows from extensive bonding analyses of AT and smaller analogs thereof, based on dispersion-corrected density functional theory (DFT). Removing the aromatic rings of either A or T has no effect on the Wats… Show more

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Cited by 59 publications
(55 citation statements)
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“…In systems with a clear σ/π or A′/A′′ separation (such as our planar ribbon and tetrameric structures), the symmetry partitioning in our approach proved to be the most informative, as has been shown …”
Section: Computational Detailsmentioning
confidence: 64%
“…In systems with a clear σ/π or A′/A′′ separation (such as our planar ribbon and tetrameric structures), the symmetry partitioning in our approach proved to be the most informative, as has been shown …”
Section: Computational Detailsmentioning
confidence: 64%
“…This conclusion can be supported by recent studies on DNA base pairs. 103,104 The hydrogen bonding in e.g. adenine-thymine pair (AT) can be classified as resonance-assisted, thus, such in which π-electron structure is of crucial importance for H-…”
mentioning
confidence: 99%
“…The usefulness of the NMR spectroscopic parameters for describing the resonance assisted hydrogen bonds, RAHB, was an open issue during the last years, and still continues to be so . One of the standard molecules used to such studies was the malonaldehide, MA.…”
Section: Few Recent Applications Of Relativistic Polarization Propagamentioning
confidence: 99%