AbstractAn efficient method for sampling equilibrium configurations of DNA chains binding one or more DNA-bending proteins is presented. The technique is applied to obtain the tertiary structures of minimal bending energy for a selection of dinucleosomal minichromosomes that differ in degree of protein-DNA interaction, protein spacing along the DNA chain contour, and ring size. The protein-bound portions of the DNA chains are represented by tight, left-handed supercoils of fixed geometry. The protein-free regions are modeled individually as elastic rods. For each random spatial arrangement of the two nucleosomes assumed during a stochastic search for the global minimum, the paths of the flexible connecting DNA segments are determined throug...
We present a computational method to evaluate the end-to-end and the contour length distribution fun...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
We present a computational method to evaluate the end-to-end and the contour length distribution fun...
AbstractAn efficient method for sampling equilibrium configurations of DNA chains binding one or mor...
AbstractBackground: The closed circular, multinucleosome-bound DNA comprising a minichromosome provi...
AbstractExplicit solutions to the equations of equilibrium in the theory of the elastic rod model fo...
AbstractBackground: The closed circular, multinucleosome-bound DNA comprising a minichromosome provi...
AbstractExplicit solutions to the equations of equilibrium in the theory of the elastic rod model fo...
AbstractDNA cyclization is potentially the most powerful approach for systematic quantitation of seq...
The physical configuration of double-stranded DNA plays a significant role in the protection and exp...
There are many challenges involved in the simulation of DNA. In this work, novel Monte Carlo techniq...
AbstractIn this paper we introduce and analyze a set of equations to study geometric and energetic a...
Small DNA circles can occur in Nature, for example as protein-constrained loops, and can be synthesi...
AbstractDNA cyclization is potentially the most powerful approach for systematic quantitation of seq...
We present a computational method to evaluate the end-to-end and the contour length distribution fun...
We present a computational method to evaluate the end-to-end and the contour length distribution fun...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
We present a computational method to evaluate the end-to-end and the contour length distribution fun...
AbstractAn efficient method for sampling equilibrium configurations of DNA chains binding one or mor...
AbstractBackground: The closed circular, multinucleosome-bound DNA comprising a minichromosome provi...
AbstractExplicit solutions to the equations of equilibrium in the theory of the elastic rod model fo...
AbstractBackground: The closed circular, multinucleosome-bound DNA comprising a minichromosome provi...
AbstractExplicit solutions to the equations of equilibrium in the theory of the elastic rod model fo...
AbstractDNA cyclization is potentially the most powerful approach for systematic quantitation of seq...
The physical configuration of double-stranded DNA plays a significant role in the protection and exp...
There are many challenges involved in the simulation of DNA. In this work, novel Monte Carlo techniq...
AbstractIn this paper we introduce and analyze a set of equations to study geometric and energetic a...
Small DNA circles can occur in Nature, for example as protein-constrained loops, and can be synthesi...
AbstractDNA cyclization is potentially the most powerful approach for systematic quantitation of seq...
We present a computational method to evaluate the end-to-end and the contour length distribution fun...
We present a computational method to evaluate the end-to-end and the contour length distribution fun...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
We present a computational method to evaluate the end-to-end and the contour length distribution fun...