The interactions of natural polyamines (putrescine2+, spermidine3+ and spermine4+) with DNA double helix are studied to characterize their nucleotide sequence pattern preference. Atomistic Molecular Dynamics simulations have been carried out for three systems consisting of the same DNA fragment d(CGCGAATTCGCGAATTCGCG) with different polyamines. The results show that polyamine molecules are localized with well-recognized patterns along the double helix with different residence times. We observed a clear hierarchy in the residence times of the polyamines, with the longest residence time (ca 100ns) in the minor groove. The analysis of the sequence dependence shows that polyamine molecules prefer the A-tract regions of the minor groove - i...
A study of long-term effects of the polycationic spermidine molecules on the conformational stabilit...
We have investigated the energetics of DNA condensation by multivalent polyamine cations. Solution s...
AbstractDefining the molecular basis of the DNA sequence selectivity of polyamine binding is central...
The interactions of natural polyamines (putrescine2+, spermidine3+ and spermine4+) with DNA dou...
DNA is a polyanion stabilized in vivo by positively charged counterions, including metal ions and sm...
Polyamines have important roles in the modulation of the cellular function and are ubiquitous in cel...
We acknowledge the Pole Scientifique de Modeisation Numerique (PSMN) for computational resources.Int...
B-form DNA can adopt alternative structures under conditions such as superhelical duress. Alternativ...
The biogenic polyamines spermine (SPM), spermidine (SPD), putrescine (PUT) and cadaverine(CAD) are u...
Natural polyamines play a key role in many biological processes, particularly in the stabilization o...
Although proteins mediate highly ordered DNA organization in vivo, theoretical studies suggest that ...
Molecular dynamics simulations with simulated annealing are performed on polyamine-DNA systems in or...
AbstractThe interaction of DNA with the polyamine spermine4+ (Spm4+), sodium ions, and water molecul...
B-form DNA can adopt alternative structures under conditions such as superhelical duress. Alternativ...
AbstractConditions of double-stranded DNA precipitation by the polyamines spermidine and spermine ha...
A study of long-term effects of the polycationic spermidine molecules on the conformational stabilit...
We have investigated the energetics of DNA condensation by multivalent polyamine cations. Solution s...
AbstractDefining the molecular basis of the DNA sequence selectivity of polyamine binding is central...
The interactions of natural polyamines (putrescine2+, spermidine3+ and spermine4+) with DNA dou...
DNA is a polyanion stabilized in vivo by positively charged counterions, including metal ions and sm...
Polyamines have important roles in the modulation of the cellular function and are ubiquitous in cel...
We acknowledge the Pole Scientifique de Modeisation Numerique (PSMN) for computational resources.Int...
B-form DNA can adopt alternative structures under conditions such as superhelical duress. Alternativ...
The biogenic polyamines spermine (SPM), spermidine (SPD), putrescine (PUT) and cadaverine(CAD) are u...
Natural polyamines play a key role in many biological processes, particularly in the stabilization o...
Although proteins mediate highly ordered DNA organization in vivo, theoretical studies suggest that ...
Molecular dynamics simulations with simulated annealing are performed on polyamine-DNA systems in or...
AbstractThe interaction of DNA with the polyamine spermine4+ (Spm4+), sodium ions, and water molecul...
B-form DNA can adopt alternative structures under conditions such as superhelical duress. Alternativ...
AbstractConditions of double-stranded DNA precipitation by the polyamines spermidine and spermine ha...
A study of long-term effects of the polycationic spermidine molecules on the conformational stabilit...
We have investigated the energetics of DNA condensation by multivalent polyamine cations. Solution s...
AbstractDefining the molecular basis of the DNA sequence selectivity of polyamine binding is central...