The localisation and dynamics of sodium counterions around the DNA duplex d(AGCGTACTAGTACGCT)2 corresponding to the trp operator fragment used in the crystal structure of the half site complex has been studied by a 1.4 ns molecular dynamics simulation in explicit solvent. A continuous and well-defined counterion density is shown to be present around the minor groove, while density patches are found in the major groove in regions where DNA bending is observed. A residence time analysis reveals the dynamic nature of these distributions. The resulting picture agrees with previous theoretical and experimental studies of A-tract DNA sequences, and is consistent with the polyelectrolyte condensation model
The effects of salt concentration on the flexibility and charge distribution of a DNA chain are prob...
AbstractThe counterion distribution around a DNA dodecamer (5′-CGCGAATTCGCG-3′) is analyzed using bo...
Molecular dynamics simulations have been employed to probe the sequence-specific binding of sodium i...
The localisation and dynamics of sodium counterions around the DNA duplex d(AGCGTACTAGTACGCT)2 corre...
AbstractThe counterion distribution around a DNA dodecamer (5′-CGCGAATTCGCG-3′) is analyzed using bo...
The behaviour of mobile counterions, Na+ and K+, was analysed around a B-DNA double helix with the s...
Nucleic acids are highly charged biopolymers whose secondary structure is strongly dependent on elec...
Nucleic acids are highly charged biopolymers whose secondary structure is strongly dependent on elec...
Nucleic acids are highly charged biopolymers whose secondary structure is strongly dependent on elec...
Nucleic acids are highly charged biopolymers whose secondary structure is strongly dependent on elec...
AbstractThe distribution of sodium and chlorine ions around DNA is presented from two molecular dyna...
Nucleic acids are highly charged biopolymers whose secondary structure is strongly dependent on elec...
We report the results of four new molecular dynamics (MD) simulations on the DNA duplex of sequence ...
The behaviour of mobile counterions, Na+ and K+, was analysed around a B-DNA double helix with the s...
Molecular dynamics simulations have been employed to probe the sequence-specific binding of sodium i...
The effects of salt concentration on the flexibility and charge distribution of a DNA chain are prob...
AbstractThe counterion distribution around a DNA dodecamer (5′-CGCGAATTCGCG-3′) is analyzed using bo...
Molecular dynamics simulations have been employed to probe the sequence-specific binding of sodium i...
The localisation and dynamics of sodium counterions around the DNA duplex d(AGCGTACTAGTACGCT)2 corre...
AbstractThe counterion distribution around a DNA dodecamer (5′-CGCGAATTCGCG-3′) is analyzed using bo...
The behaviour of mobile counterions, Na+ and K+, was analysed around a B-DNA double helix with the s...
Nucleic acids are highly charged biopolymers whose secondary structure is strongly dependent on elec...
Nucleic acids are highly charged biopolymers whose secondary structure is strongly dependent on elec...
Nucleic acids are highly charged biopolymers whose secondary structure is strongly dependent on elec...
Nucleic acids are highly charged biopolymers whose secondary structure is strongly dependent on elec...
AbstractThe distribution of sodium and chlorine ions around DNA is presented from two molecular dyna...
Nucleic acids are highly charged biopolymers whose secondary structure is strongly dependent on elec...
We report the results of four new molecular dynamics (MD) simulations on the DNA duplex of sequence ...
The behaviour of mobile counterions, Na+ and K+, was analysed around a B-DNA double helix with the s...
Molecular dynamics simulations have been employed to probe the sequence-specific binding of sodium i...
The effects of salt concentration on the flexibility and charge distribution of a DNA chain are prob...
AbstractThe counterion distribution around a DNA dodecamer (5′-CGCGAATTCGCG-3′) is analyzed using bo...
Molecular dynamics simulations have been employed to probe the sequence-specific binding of sodium i...