International audienceMechanistic modeling in biology allows to investigate, based on first principles, if putative hypotheses are compatible with observations and to drive further experimental works. Along this line, polymer modeling has been instrumental in 3D genomics to better understand the impact of key mechanisms on the spatial genome organization. Here, I describe how polymer-based models can be practically used to study the role of epigenome in chromosome folding. I illustrate this methodology in the context of Drosophila epigenome folding
The constant development of sophisticated technologies is allowing to dissect three-dimensional chro...
The development of new experimental technologies is opening the way to a deeper investigation of the...
The development of new experimental technologies is opening the way to a deeper investigation of the...
International audienceMechanistic modeling in biology allows to investigate, based on first principl...
International audienceGenomes of eukaryotes are partitioned into domains of functionally distinct ch...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
International audienceIn this chapter, the authors review their efforts to understand the functional...
International audienceIn this chapter, the authors review their efforts to understand the functional...
International audienceIn this chapter, the authors review their efforts to understand the functional...
International audienceIn this chapter, the authors review their efforts to understand the functional...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
International audienceIn this chapter, the authors review their efforts to understand the functional...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
The constant development of sophisticated technologies is allowing to dissect three-dimensional chro...
The constant development of sophisticated technologies is allowing to dissect three-dimensional chro...
The development of new experimental technologies is opening the way to a deeper investigation of the...
The development of new experimental technologies is opening the way to a deeper investigation of the...
International audienceMechanistic modeling in biology allows to investigate, based on first principl...
International audienceGenomes of eukaryotes are partitioned into domains of functionally distinct ch...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
International audienceIn this chapter, the authors review their efforts to understand the functional...
International audienceIn this chapter, the authors review their efforts to understand the functional...
International audienceIn this chapter, the authors review their efforts to understand the functional...
International audienceIn this chapter, the authors review their efforts to understand the functional...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
International audienceIn this chapter, the authors review their efforts to understand the functional...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
The constant development of sophisticated technologies is allowing to dissect three-dimensional chro...
The constant development of sophisticated technologies is allowing to dissect three-dimensional chro...
The development of new experimental technologies is opening the way to a deeper investigation of the...
The development of new experimental technologies is opening the way to a deeper investigation of the...