<div><p>The 3D organization of chromosomes is crucial for regulating gene expression and cell function. Many experimental and polymer modeling efforts are dedicated to deciphering the mechanistic principles behind chromosome folding. Chromosomes are long and densely packed—topologically constrained—polymers. The main challenges are therefore to develop adequate models and simulation methods to investigate properly the multi spatio-temporal scales of such macromolecules. Here, we proposed a generic strategy to develop efficient coarse-grained models for self-avoiding polymers on a lattice. Accounting accurately for the polymer entanglement length and the volumic density, we show that our simulation scheme not only captures the steady-state s...
The underlying global organization of chromatin within the cell nucleus has been the focus of intens...
International audienceCharacterizing the link between small-scale chromatin structure and large-scal...
Chromatin organization can be probed by Chromosomal Capture (5C) data, from which the encounter prob...
The 3D organization of chromosomes is crucial for regulating gene expression and cell function. Many...
Novel technologies are revealing that chromosomes have a complex three-dimensional organization with...
In eukaryotes, chromosomes reside in the crowded environment of the cell nucleus. Understanding the ...
International audienceGenomes of eukaryotes are partitioned into domains of functionally distinct ch...
Genome function in higher eukaryotes involves major changes in the spatial organization of the chrom...
We investigate spatiotemporal dynamics of human interphase chromosomes by employing a heteropolymer ...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
The central theme of the dissertation is to understand physical principles underlying the dynamical ...
We investigate spatiotemporal dynamics of human interphase chromosomes by employing a heteropolymer ...
International audienceBackground: In higher eukaryotes, the genome is partitioned into large "Topolo...
International audienceIn this chapter, the authors review their efforts to understand the functional...
Recent super-resolution imaging technologies enable tracing chromatin conformation with nanometer-sc...
The underlying global organization of chromatin within the cell nucleus has been the focus of intens...
International audienceCharacterizing the link between small-scale chromatin structure and large-scal...
Chromatin organization can be probed by Chromosomal Capture (5C) data, from which the encounter prob...
The 3D organization of chromosomes is crucial for regulating gene expression and cell function. Many...
Novel technologies are revealing that chromosomes have a complex three-dimensional organization with...
In eukaryotes, chromosomes reside in the crowded environment of the cell nucleus. Understanding the ...
International audienceGenomes of eukaryotes are partitioned into domains of functionally distinct ch...
Genome function in higher eukaryotes involves major changes in the spatial organization of the chrom...
We investigate spatiotemporal dynamics of human interphase chromosomes by employing a heteropolymer ...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
The central theme of the dissertation is to understand physical principles underlying the dynamical ...
We investigate spatiotemporal dynamics of human interphase chromosomes by employing a heteropolymer ...
International audienceBackground: In higher eukaryotes, the genome is partitioned into large "Topolo...
International audienceIn this chapter, the authors review their efforts to understand the functional...
Recent super-resolution imaging technologies enable tracing chromatin conformation with nanometer-sc...
The underlying global organization of chromatin within the cell nucleus has been the focus of intens...
International audienceCharacterizing the link between small-scale chromatin structure and large-scal...
Chromatin organization can be probed by Chromosomal Capture (5C) data, from which the encounter prob...