We study the effect of the composition of the genetic sequence on the melting temperature of double stranded DNA, using some simple analytically solvable models proposed in the framework of the wetting problem. We review previous work on disordered versions of these models and solve them when there were not preexistent solutions. We check the solutions with Monte Carlo simulations and transfer matrix numerical calculations. We present numerical evidence that suggests that the logarithmic corrections to the critical temperature due to disorder, previously found in RSOS models, apply more generally to ASOS and continuous models. The agreement between the theoretical models and experimental data shows that, in this context, disorder sho...
We perform an extensive numerical study of the disordered Poland–Scheraga (PS) model for DNA denatur...
The melting of the coding and non-coding classes of natural DNA sequences was investigated using a p...
We report on the nature of the thermal-denaturation transition of homogeneous DNA as determined from...
We study the effect of the composition of the genetic sequence on the melting temperature of double...
We recently proposed a dynamical mesoscopic model for DNA, which is based, like the statistical ones...
This work deals with the development and the analysis of the properties of new DNA models, in order ...
When double-stranded DNA molecules are heated, or exposed to denaturing agents, the two strands are ...
Using rare event simulation techniques, we calculated DNA denaturation rate constants for a range of...
Melting transition of double-stranded oligonucleotide sequences, in contact with a Langevin fluctuat...
International audienceWe investigate numerically the transition properties for models of DNA denatur...
The common key to nearly all processes involving DNA is the hybridization and melting of the double ...
24 pagesInternational audienceFor the DNA denaturation transition in the presence of random contact ...
International audienceWe numerically study the wetting (adsorption) transition of a polymer chain on...
Gaining knowledge and understanding of the structure and function of DNA, our genetic material, is c...
We report on the nature of the thermal-denaturation transition of homogeneous DNA as determined from...
We perform an extensive numerical study of the disordered Poland–Scheraga (PS) model for DNA denatur...
The melting of the coding and non-coding classes of natural DNA sequences was investigated using a p...
We report on the nature of the thermal-denaturation transition of homogeneous DNA as determined from...
We study the effect of the composition of the genetic sequence on the melting temperature of double...
We recently proposed a dynamical mesoscopic model for DNA, which is based, like the statistical ones...
This work deals with the development and the analysis of the properties of new DNA models, in order ...
When double-stranded DNA molecules are heated, or exposed to denaturing agents, the two strands are ...
Using rare event simulation techniques, we calculated DNA denaturation rate constants for a range of...
Melting transition of double-stranded oligonucleotide sequences, in contact with a Langevin fluctuat...
International audienceWe investigate numerically the transition properties for models of DNA denatur...
The common key to nearly all processes involving DNA is the hybridization and melting of the double ...
24 pagesInternational audienceFor the DNA denaturation transition in the presence of random contact ...
International audienceWe numerically study the wetting (adsorption) transition of a polymer chain on...
Gaining knowledge and understanding of the structure and function of DNA, our genetic material, is c...
We report on the nature of the thermal-denaturation transition of homogeneous DNA as determined from...
We perform an extensive numerical study of the disordered Poland–Scheraga (PS) model for DNA denatur...
The melting of the coding and non-coding classes of natural DNA sequences was investigated using a p...
We report on the nature of the thermal-denaturation transition of homogeneous DNA as determined from...