AbstractMonte Carlo simulations are used to study the effect of spontaneous (intrinsic) twist on the conformation of topologically equilibrated minicircles of dsDNA. The twist, writhe, and radius of gyration distributions and their moments are calculated for different spontaneous twist angles and DNA lengths. The average writhe and twist deviate in an oscillatory fashion (with the period of the double helix) from their spontaneous values, as one spans the range between two neighboring integer values of intrinsic twist. Such deviations vanish in the limit of long DNA plasmids
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
The base pair fluctuations and helix untwisting are examined for a circular molecule. A realistic me...
AbstractMonte Carlo simulations are used to study the effect of spontaneous (intrinsic) twist on the...
Both thermal fluctuations and the intrinsic curvature of DNA contribute to conformations of the DNA ...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
The interplay between bending of the molecule axis and appearance of disruptions in circular DNA mol...
The interplay between bending of the molecule axis and appearance of disruptions in circular DNA mol...
The interplay between bending of the molecule axis and appearance of disruptions in circular DNA mol...
SummaryRecent experiments on minicircle formation suggest that a conformational mechanism other than...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
AbstractRecently, several studies have shown that short doubled-stranded DNA (dsDNA) loops more read...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
The base pair fluctuations and helix untwisting are examined for a circular molecule. A realistic me...
AbstractMonte Carlo simulations are used to study the effect of spontaneous (intrinsic) twist on the...
Both thermal fluctuations and the intrinsic curvature of DNA contribute to conformations of the DNA ...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
The interplay between bending of the molecule axis and appearance of disruptions in circular DNA mol...
The interplay between bending of the molecule axis and appearance of disruptions in circular DNA mol...
The interplay between bending of the molecule axis and appearance of disruptions in circular DNA mol...
SummaryRecent experiments on minicircle formation suggest that a conformational mechanism other than...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
AbstractRecently, several studies have shown that short doubled-stranded DNA (dsDNA) loops more read...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
The base pair fluctuations and helix untwisting are examined for a circular molecule. A realistic me...