AbstractThe condensation of free DNA into toroidal structures in the presence of multivalent ions and polypeptides is well known. Recent single molecule experiments have shown that condensation into toroids occurs even when the DNA molecule is subjected to tensile forces. Here we show that the combined tension and torsion of DNA in the presence of condensing agents dramatically modifies this picture by introducing supercoiled DNA as a competing structure in addition to toroids. We combine a fluctuating elastic rod model of DNA with phenomenological models for DNA interaction in the presence of condensing agents to compute the minimum energy configuration for given tension and end-rotations. We show that for each tension there is a critical ...
It is well known that multivalent cations can cause DNA to condense from solution to form high-densi...
AbstractDNA toroids that form inside the bacteriophage capsid present different shapes according to ...
Deciphering the principles of DNA condensation is important to understand problems such as genome pa...
AbstractThe condensation of free DNA into toroidal structures in the presence of multivalent ions an...
AbstractIn living organisms, DNA is generally confined into very small volumes. In most viruses, pos...
In the presence of multivalent cations, high molecular weight DNA undergoes a dramatic condensation ...
In the presence of multivalent cations, high molecular weight DNA undergoes a dramatic condensation ...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
AbstractUnder a wide variety of conditions, the addition of condensing agents to dilute solutions of...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
A model is proposed for polymer- and salt-induced toroidal condensates of DNA, based on a recent the...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
DNA condensation observed in vitro with the addition of polyvalent counterions is due to intermolecu...
AbstractThe elastic response of single plasmid and lambda phage DNA molecules was probed using optic...
It is well known that multivalent cations can cause DNA to condense from solution to form high-densi...
AbstractDNA toroids that form inside the bacteriophage capsid present different shapes according to ...
Deciphering the principles of DNA condensation is important to understand problems such as genome pa...
AbstractThe condensation of free DNA into toroidal structures in the presence of multivalent ions an...
AbstractIn living organisms, DNA is generally confined into very small volumes. In most viruses, pos...
In the presence of multivalent cations, high molecular weight DNA undergoes a dramatic condensation ...
In the presence of multivalent cations, high molecular weight DNA undergoes a dramatic condensation ...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
AbstractUnder a wide variety of conditions, the addition of condensing agents to dilute solutions of...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
A model is proposed for polymer- and salt-induced toroidal condensates of DNA, based on a recent the...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
DNA condensation observed in vitro with the addition of polyvalent counterions is due to intermolecu...
AbstractThe elastic response of single plasmid and lambda phage DNA molecules was probed using optic...
It is well known that multivalent cations can cause DNA to condense from solution to form high-densi...
AbstractDNA toroids that form inside the bacteriophage capsid present different shapes according to ...
Deciphering the principles of DNA condensation is important to understand problems such as genome pa...