DNA condensation observed in vitro with the addition of polyvalent counterions is due to intermolecular attractive forces. We introduce a quantitative model of these forces in a Brownian dynamics simulation in addition to a standard mean-field Poisson-Boltzmann repulsion. The comparison of a theoretical value of the effective diameter calculated from the second virial coefficient in cylindrical geometry with some experimental results allows a quantitative evaluation of the one-parameter attractive potential. We show afterward that with a sufficient concentration of divalent salt (typically approximately 20 mM MgCl(2)), supercoiled DNA adopts a collapsed form where opposing segments of interwound regions present zones of lateral contact. How...
Densely packed DNA arrays exhibit hexagonal and orthorhombic local packings, as well as a weakly fir...
A model is proposed for polymer- and salt-induced toroidal condensates of DNA, based on a recent the...
AbstractSolid phase amplification (SPA), a new method to amplify DNA, is characterized by the use of...
AbstractThe condensation of free DNA into toroidal structures in the presence of multivalent ions an...
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 ...
This thesis aims to understand the nanoscale effects of water as a structured solvent on the phenome...
This thesis aims to understand the nanoscale effects of water as a structured solvent on the phenome...
It is well known that multivalent cations can cause DNA to condense from solution to form high-densi...
It is well known that multivalent cations can cause DNA to condense from solution to form high-densi...
AbstractThe condensation of free DNA into toroidal structures in the presence of multivalent ions an...
AbstractUnder a wide variety of conditions, the addition of condensing agents to dilute solutions of...
AbstractThe elastic response of single plasmid and lambda phage DNA molecules was probed using optic...
The effective DNA–DNA interaction force is calculated by computer simulations with explicit tetraval...
Densely packed DNA arrays exhibit hexagonal and orthorhombic local packings, as well as a weakly fir...
Densely packed DNA arrays exhibit hexagonal and orthorhombic local packings, as well as a weakly fir...
A model is proposed for polymer- and salt-induced toroidal condensates of DNA, based on a recent the...
AbstractSolid phase amplification (SPA), a new method to amplify DNA, is characterized by the use of...
AbstractThe condensation of free DNA into toroidal structures in the presence of multivalent ions an...
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 ...
This thesis aims to understand the nanoscale effects of water as a structured solvent on the phenome...
This thesis aims to understand the nanoscale effects of water as a structured solvent on the phenome...
It is well known that multivalent cations can cause DNA to condense from solution to form high-densi...
It is well known that multivalent cations can cause DNA to condense from solution to form high-densi...
AbstractThe condensation of free DNA into toroidal structures in the presence of multivalent ions an...
AbstractUnder a wide variety of conditions, the addition of condensing agents to dilute solutions of...
AbstractThe elastic response of single plasmid and lambda phage DNA molecules was probed using optic...
The effective DNA–DNA interaction force is calculated by computer simulations with explicit tetraval...
Densely packed DNA arrays exhibit hexagonal and orthorhombic local packings, as well as a weakly fir...
Densely packed DNA arrays exhibit hexagonal and orthorhombic local packings, as well as a weakly fir...
A model is proposed for polymer- and salt-induced toroidal condensates of DNA, based on a recent the...
AbstractSolid phase amplification (SPA), a new method to amplify DNA, is characterized by the use of...