© The Author(s) 2017.Understanding the physical principles that govern the complex DNA structural organization as well as its mechanical and thermodynamical properties is essential for the advancement in both life sciences and genetic engineering. Recently we have discovered that the complex DNA organization is explicitly reflected in the arrangement of nucleotides depicted by the universal power law tailed internucleotide interval distribution that is valid for complete genomes of various prokaryotic and eukaryotic organisms. Here we suggest a superstatistical model that represents a long DNA molecule by a series of consecutive ∼150 bp DNA segments with the alternation of the local nucleotide composition between segments exhibiting long-ra...
The complexity of the primary structure of human DNA is explored using methods from nonequilibrium s...
AbstractA theoretical model for predicting nucleosome thermodynamic stability in terms of DNA sequen...
International audienceDNA actively interacts with proteins involved in replication, transcription, r...
© The Author(s) 2017.Understanding the physical principles that govern the complex DNA structural or...
Although DNA is iconized as a straight double helix, it does not exist in this canonical form in bio...
DNA supercoiling is central to fundamental processes of living organisms. Its average level along th...
Inside the cell, DNA continuously interacts with the proteins involved in replication, transcription...
© 2014 Bogachev et al. Uncovering the fundamental laws that govern the complex DNA structural organi...
Uncovering the fundamental laws that govern the complex DNA structural organization remains challeng...
International audienceIn condensed matter physics, simplified descriptions are obtained by coarse-gr...
Uncovering the fundamental laws that govern the complex DNA structural organization remains challeng...
Although DNA is iconized as a straight double helix, it does not exist in this canonical form in bio...
International audienceDNA supercoiling, the under or overwinding of DNA, is a key physical mechanism...
DNA actively interacts with proteins involved in replication, transcription, repair, and regulation ...
The first level of folding of DNA in eukaryotes is provided by the so-called "10-nm chromatin fibre"...
The complexity of the primary structure of human DNA is explored using methods from nonequilibrium s...
AbstractA theoretical model for predicting nucleosome thermodynamic stability in terms of DNA sequen...
International audienceDNA actively interacts with proteins involved in replication, transcription, r...
© The Author(s) 2017.Understanding the physical principles that govern the complex DNA structural or...
Although DNA is iconized as a straight double helix, it does not exist in this canonical form in bio...
DNA supercoiling is central to fundamental processes of living organisms. Its average level along th...
Inside the cell, DNA continuously interacts with the proteins involved in replication, transcription...
© 2014 Bogachev et al. Uncovering the fundamental laws that govern the complex DNA structural organi...
Uncovering the fundamental laws that govern the complex DNA structural organization remains challeng...
International audienceIn condensed matter physics, simplified descriptions are obtained by coarse-gr...
Uncovering the fundamental laws that govern the complex DNA structural organization remains challeng...
Although DNA is iconized as a straight double helix, it does not exist in this canonical form in bio...
International audienceDNA supercoiling, the under or overwinding of DNA, is a key physical mechanism...
DNA actively interacts with proteins involved in replication, transcription, repair, and regulation ...
The first level of folding of DNA in eukaryotes is provided by the so-called "10-nm chromatin fibre"...
The complexity of the primary structure of human DNA is explored using methods from nonequilibrium s...
AbstractA theoretical model for predicting nucleosome thermodynamic stability in terms of DNA sequen...
International audienceDNA actively interacts with proteins involved in replication, transcription, r...