We review the picture of chromatin large-scale 3D organization emerging from the analysis of Hi-C data and polymer modeling. In higher mammals, Hi-C contact maps reveal a complex higher-order organization, extending from the sub-Mb to chromosomal scales, hierarchically folded in a structure of domains-within-domains (metaTADs). The domain folding hierarchy is partially conserved throughout differentiation, and deeply correlated to epigenomic features. Rearrangements in the metaTAD topology relate to gene expression modifications: in particular, in neuronal differentiation models, topologically associated domains (TADs) tend to have coherent expression changes within architecturally conserved metaTAD niches. To identify the nature of archite...
The mammalian genome has a complex, functional 3D organization. However, it remains largely unknown ...
In recent years the development of novel technologies, as Hi-C or GAM, allowed to investigate the sp...
The mammalian genome has a complex, functional 3D organization. However, it remains largely unknown ...
We review the picture of chromatin large-scale 3D organization emerging from the analysis of Hi-C da...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
In mammalian cell nuclei, chromatin has a spatial organization that is strictly related to cellular ...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Chromosomes are giant chain molecules organized into an ensemble of three-dimensional structures cha...
International audienceBackground: In higher eukaryotes, the genome is partitioned into large "Topolo...
This PhD thesis concerns the application of polymer physics to investigate the mechanisms underlying...
The development of new experimental technologies is opening the way to a deeper investigation of the...
In recent years the development of novel technologies, as Hi-C or GAM, allowed to investigate the sp...
The development of new experimental technologies is opening the way to a deeper investigation of the...
In recent years the development of novel technologies, as Hi-C or GAM, allowed to investigate the sp...
The mammalian genome has a complex, functional 3D organization. However, it remains largely unknown ...
In recent years the development of novel technologies, as Hi-C or GAM, allowed to investigate the sp...
The mammalian genome has a complex, functional 3D organization. However, it remains largely unknown ...
We review the picture of chromatin large-scale 3D organization emerging from the analysis of Hi-C da...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
In mammalian cell nuclei, chromatin has a spatial organization that is strictly related to cellular ...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Chromosomes are giant chain molecules organized into an ensemble of three-dimensional structures cha...
International audienceBackground: In higher eukaryotes, the genome is partitioned into large "Topolo...
This PhD thesis concerns the application of polymer physics to investigate the mechanisms underlying...
The development of new experimental technologies is opening the way to a deeper investigation of the...
In recent years the development of novel technologies, as Hi-C or GAM, allowed to investigate the sp...
The development of new experimental technologies is opening the way to a deeper investigation of the...
In recent years the development of novel technologies, as Hi-C or GAM, allowed to investigate the sp...
The mammalian genome has a complex, functional 3D organization. However, it remains largely unknown ...
In recent years the development of novel technologies, as Hi-C or GAM, allowed to investigate the sp...
The mammalian genome has a complex, functional 3D organization. However, it remains largely unknown ...