Super-resolution microscopy identifies sub-topologically associating domain (TAD) nanodomains and intercellular heterogeneity in TAD conformation and insulation. Cohesin or CTCF depletion regulates distinct types of chromatin contacts at the TAD but not nanodomain level.The genome folds into a hierarchy of three-dimensional structures within the nucleus. At the sub-megabase scale, chromosomes form topologically associating domains (TADs)(1-4). However, how TADs fold in single cells is elusive. Here, we reveal TAD features inaccessible to cell population analysis by using super-resolution microscopy. TAD structures and physical insulation associated with their borders are variable between individual cells, yet chromatin intermingling is enri...
International audienceBackground : The 3D organization of the chromatin fiber in cell nuclei plays a...
The spatial organization of the genome is intimately linked to its biological function, yet our unde...
Mammalian genomes are folded into spatial domains, which regulate gene expression by modulating enha...
The genome folds into a hierarchy of three-dimensional structures within the nucleus. At the sub-meg...
Three-dimensional (3D) chromatin organization plays a key role in regulating mammalian genome functi...
International audienceDeciphering the rules of genome folding in the cell nucleus is essential to un...
Inside of the nucleus, chromosomes are intricately folded to regulate expression of their genes. Ear...
Abstract Background Mechanisms underlying genome 3D organization and domain formation in the mammali...
Abstract Background Topologically associating domains (TADs) are important building blocks of three-...
Imaging and chromosome conformation capture studies have revealed several layers of chromosome organ...
Mammalian chromosomes fold into arrays of megabase‐sized topologically associating domains (TADs), w...
My thesis project consisted in studying the mechanisms of the three-dimensional genome folding in eu...
Proximity ligation assays such as circularized chromosome conformation capture and high-throughput c...
The tridimensional (3D) organization of mammalian genomes combines structures from different length ...
Whereas folding of genomes at the large scale of epigenomic compartments and topologically associati...
International audienceBackground : The 3D organization of the chromatin fiber in cell nuclei plays a...
The spatial organization of the genome is intimately linked to its biological function, yet our unde...
Mammalian genomes are folded into spatial domains, which regulate gene expression by modulating enha...
The genome folds into a hierarchy of three-dimensional structures within the nucleus. At the sub-meg...
Three-dimensional (3D) chromatin organization plays a key role in regulating mammalian genome functi...
International audienceDeciphering the rules of genome folding in the cell nucleus is essential to un...
Inside of the nucleus, chromosomes are intricately folded to regulate expression of their genes. Ear...
Abstract Background Mechanisms underlying genome 3D organization and domain formation in the mammali...
Abstract Background Topologically associating domains (TADs) are important building blocks of three-...
Imaging and chromosome conformation capture studies have revealed several layers of chromosome organ...
Mammalian chromosomes fold into arrays of megabase‐sized topologically associating domains (TADs), w...
My thesis project consisted in studying the mechanisms of the three-dimensional genome folding in eu...
Proximity ligation assays such as circularized chromosome conformation capture and high-throughput c...
The tridimensional (3D) organization of mammalian genomes combines structures from different length ...
Whereas folding of genomes at the large scale of epigenomic compartments and topologically associati...
International audienceBackground : The 3D organization of the chromatin fiber in cell nuclei plays a...
The spatial organization of the genome is intimately linked to its biological function, yet our unde...
Mammalian genomes are folded into spatial domains, which regulate gene expression by modulating enha...