In this Chapter, we discuss how the hydrogen bonds in Watson-Crick base pairs can be tuned both structurally and in terms of bond strength by exposing the DNA bases to different kinds of substitutions: (1) substitution in the X-H Y hydrogen bonding moiety, (2) remote substitution, i.e., introducing substituents in the DNA base at positions not directly involved in hydrogen bonding; and (3) environment effects which can be conceived as supramolecular substitution. The hydrogen bonds in DNA Watson-Crick base pairs have long been considered predominantly electrostatic phenomena. Here, we show with state-of the art calculations that this is not true and that electrostatic interactions and covalent (i.e. orbital interaction) contributions in the...
1804-1812The ability to form intermolecular hydrogen bonds in DNA depends on the donor-acceptor ato...
Up till now, there has been a significant disagreement between theory and experiment regarding hydro...
Hydrogen bonds play a crucial role in many biochemical processes and in supramolecular chemistry. In...
We have theoretically analyzed Watson-Crick AT and GC base pairs in which purine C8 and/or pyrimidin...
The hydrogen bonds in DNA Watson–Crick base pairs have long been considered predominantly electrosta...
We have theoretically analyzed a complete series of Watson–Crick and mismatched DNA base pairs, both...
We have theoretically analyzed mimics of Watson-Crick AT and GC base pairs in which N-H•••O hydrogen...
The hydrogen bonding patterns in the adenine-thymine (A-T) and guanine-cytosine (G-C) base pairs for...
We have theoretically analyzed Watson–Crick guanine–cytosine (GC) base pairs in which purine-C8 and/...
We have theoretically analyzed Watson–Crick guanine–cytosine (GC) base pairs in which purine-C8 and/...
An overview is given of results that reestablish hydrogen bonding as an essential factor in DNA repl...
<div><p>Electrical forces are the background of all the interactions occurring in biochemical system...
Electrical forces are the background of all the interactions occurring in biochemical systems. From ...
Model systems (of up to 116 atoms) for molecular crystals and mismatched pairs of DNA bases have bee...
We have theoretically analyzed mimics of Watson-Crick adenine-thymine (AT) and guanine-cytosine (GC)...
1804-1812The ability to form intermolecular hydrogen bonds in DNA depends on the donor-acceptor ato...
Up till now, there has been a significant disagreement between theory and experiment regarding hydro...
Hydrogen bonds play a crucial role in many biochemical processes and in supramolecular chemistry. In...
We have theoretically analyzed Watson-Crick AT and GC base pairs in which purine C8 and/or pyrimidin...
The hydrogen bonds in DNA Watson–Crick base pairs have long been considered predominantly electrosta...
We have theoretically analyzed a complete series of Watson–Crick and mismatched DNA base pairs, both...
We have theoretically analyzed mimics of Watson-Crick AT and GC base pairs in which N-H•••O hydrogen...
The hydrogen bonding patterns in the adenine-thymine (A-T) and guanine-cytosine (G-C) base pairs for...
We have theoretically analyzed Watson–Crick guanine–cytosine (GC) base pairs in which purine-C8 and/...
We have theoretically analyzed Watson–Crick guanine–cytosine (GC) base pairs in which purine-C8 and/...
An overview is given of results that reestablish hydrogen bonding as an essential factor in DNA repl...
<div><p>Electrical forces are the background of all the interactions occurring in biochemical system...
Electrical forces are the background of all the interactions occurring in biochemical systems. From ...
Model systems (of up to 116 atoms) for molecular crystals and mismatched pairs of DNA bases have bee...
We have theoretically analyzed mimics of Watson-Crick adenine-thymine (AT) and guanine-cytosine (GC)...
1804-1812The ability to form intermolecular hydrogen bonds in DNA depends on the donor-acceptor ato...
Up till now, there has been a significant disagreement between theory and experiment regarding hydro...
Hydrogen bonds play a crucial role in many biochemical processes and in supramolecular chemistry. In...