Chromosomes are key players of cell physiology, their dynamics provides valuable information about its physical organization. In both prokaryotes and eukaryotes, the short-time motion of chromosomal loci has been described with a Rouse model in a simple or viscoelastic medium. However, little emphasis has been put on the influence of the folded organization of chromosomes on the local dynamics. Clearly, stress propagation, and thus dynamics, must be affected by such organization, but a theory allowing us to extract such information from data, e.g., on two-point correlations, is lacking. Here, we describe a theoretical framework able to answer this general polymer dynamics question. We provide a scaling analysis of the stress-propagation tim...
Clear organizational patterns on the genome have emerged from the statistics of population studies o...
International audienceChromosome organization and dynamics are involved in regulating many ...
International audienceDNA folding and dynamics along with major nuclear functions are determined by ...
We investigated the viscoelastic response of model interphase chromosomes by tracking the three-dime...
We investigate spatiotemporal dynamics of human interphase chromosomes by employing a heteropolymer ...
The 3D organization of chromosomes is crucial for regulating gene expression and cell function. Many...
<div><p>The 3D organization of chromosomes is crucial for regulating gene expression and cell functi...
We investigate spatiotemporal dynamics of human interphase chromosomes by employing a heteropolymer ...
The nucleus of a eukaryotic cell is a nonequilibrium system where chromatin is subjected to active p...
Homologous recombination drives structural reorganization of the nucleus in early meiosis. In order ...
International audienceCharacterizing the link between small-scale chromatin structure and large-scal...
Chromatin fibers within the interior of the nucleus of the cell make stable interactions with the nu...
Novel technologies are revealing that chromosomes have a complex three-dimensional organization with...
Clear organizational patterns on the genome have emerged from the statistics of population studies o...
International audienceChromosome organization and dynamics are involved in regulating many ...
International audienceDNA folding and dynamics along with major nuclear functions are determined by ...
We investigated the viscoelastic response of model interphase chromosomes by tracking the three-dime...
We investigate spatiotemporal dynamics of human interphase chromosomes by employing a heteropolymer ...
The 3D organization of chromosomes is crucial for regulating gene expression and cell function. Many...
<div><p>The 3D organization of chromosomes is crucial for regulating gene expression and cell functi...
We investigate spatiotemporal dynamics of human interphase chromosomes by employing a heteropolymer ...
The nucleus of a eukaryotic cell is a nonequilibrium system where chromatin is subjected to active p...
Homologous recombination drives structural reorganization of the nucleus in early meiosis. In order ...
International audienceCharacterizing the link between small-scale chromatin structure and large-scal...
Chromatin fibers within the interior of the nucleus of the cell make stable interactions with the nu...
Novel technologies are revealing that chromosomes have a complex three-dimensional organization with...
Clear organizational patterns on the genome have emerged from the statistics of population studies o...
International audienceChromosome organization and dynamics are involved in regulating many ...
International audienceDNA folding and dynamics along with major nuclear functions are determined by ...