AbstractThe glycosyl torsion (χ) in nucleic acids has long been recognized to be a major determinant of their conformational properties. χ torsional energetics were systematically mapped in deoxyribonucleosides using high-level quantum mechanical methods, for north and south sugar puckers and with γ in the g+ and trans conformations. In all cases, the syn conformation is found higher in energy than the anti. When γ is changed from g+ to trans, the anti orientation of the base is strongly destabilized, and the energy difference and barrier between anti and syn are significantly decreased. The barrier between anti and syn in deoxyribonucleosides is found to be less than 10kcal/mol and tends to be lower with purines than with pyrimidines. With...
Potential energy calculations have been carried out on guanosine 5'-monophosphate and guanosine 3',5...
The preferred conformations of ribo and deoxyribo α -nucleosides andβ -nucleotides, the stereoisomer...
Torsional stress gives a significant impact on the structure and dynamics of chromatin. For example...
AbstractThe glycosyl torsion (χ) in nucleic acids has long been recognized to be a major determinant...
AbstractStructural properties of biomolecules are dictated by their intrinsic conformational energet...
NMR chemical shifts are highly sensitive probes of local molecular conformation and environment and ...
NMR chemical shifts are highly sensitive probes of local molecular conformation and environment and ...
Conformational energies of the 5'-adenosine monophosphate have been computed as a function of χ and ...
Model building studies on helical structures of polynucleotides indicate the glycosydic torsion, x, ...
Conformational analysis of nucleic acids and polynucleotides is far more complex than that of protei...
In this paper, the preferred conformations of the bases with respect to the sugar in various base-su...
Conformational analysis of nucleic acids and polynucleotides is far more complex than that of protei...
Conformational analysis of nucleic acids and polynucleotides is far more complex than that of protei...
AbstractStructural properties of biomolecules are dictated by their intrinsic conformational energet...
Abstract: The study investigates electronic structure and gas-phase energetics of the DNA sugar-phos...
Potential energy calculations have been carried out on guanosine 5'-monophosphate and guanosine 3',5...
The preferred conformations of ribo and deoxyribo α -nucleosides andβ -nucleotides, the stereoisomer...
Torsional stress gives a significant impact on the structure and dynamics of chromatin. For example...
AbstractThe glycosyl torsion (χ) in nucleic acids has long been recognized to be a major determinant...
AbstractStructural properties of biomolecules are dictated by their intrinsic conformational energet...
NMR chemical shifts are highly sensitive probes of local molecular conformation and environment and ...
NMR chemical shifts are highly sensitive probes of local molecular conformation and environment and ...
Conformational energies of the 5'-adenosine monophosphate have been computed as a function of χ and ...
Model building studies on helical structures of polynucleotides indicate the glycosydic torsion, x, ...
Conformational analysis of nucleic acids and polynucleotides is far more complex than that of protei...
In this paper, the preferred conformations of the bases with respect to the sugar in various base-su...
Conformational analysis of nucleic acids and polynucleotides is far more complex than that of protei...
Conformational analysis of nucleic acids and polynucleotides is far more complex than that of protei...
AbstractStructural properties of biomolecules are dictated by their intrinsic conformational energet...
Abstract: The study investigates electronic structure and gas-phase energetics of the DNA sugar-phos...
Potential energy calculations have been carried out on guanosine 5'-monophosphate and guanosine 3',5...
The preferred conformations of ribo and deoxyribo α -nucleosides andβ -nucleotides, the stereoisomer...
Torsional stress gives a significant impact on the structure and dynamics of chromatin. For example...