International audienceImaging and chromosome conformation capture studies have revealed several layers of chromosome organization, including segregation into megabase-sized active and inactive compartments, and partitioning into sub-megabase domains (TADs). It remains unclear, however, how these layers of organization form, interact with one another and influence genome function. Here we show that deletion of the cohesin-loading factor Nipbl in mouse liver leads to a marked reorganization of chromosomal folding. TADs and associated Hi-C peaks vanish globally, even in the absence of transcriptional changes. By contrast, compartmental segregation is preserved and even reinforced. Strikingly, the disappearance of TADs unmasks a finer compartme...
The spatial organization of chromosomes influences many nuclear processes including gene expression....
<div><p>Folding of the chromosomal fibre in interphase nuclei is an important element in the regulat...
Chromosome conformation capture approaches have shown that interphase chromatin is partitioned into ...
Imaging and chromosome conformation capture studies have revealed several layers of chromosome organ...
Inside of the nucleus, chromosomes are intricately folded to regulate expression of their genes. Ear...
Mammalian chromatin is spatially organized at many scales showing two prominent features in interpha...
The human genome folds to create thousands of intervals, called “contact domains,” that exhibit enha...
Cohesin plays vital roles in chromatin folding and gene expression regulation, cooperating with such...
The organisation of mammalian genomes into loops and topologically associating domains (TADs) contri...
Cohesin plays vital roles in chromatin folding and gene expression regulation, cooperating with such...
Super-resolution microscopy identifies sub-topologically associating domain (TAD) nanodomains and in...
Mammalian genomes are spatially organized into compartments, topologically associating domains (TADs...
Whereas folding of genomes at the large scale of epigenomic compartments and topologically associati...
Proximity ligation assays such as circularized chromosome conformation capture and high-throughput c...
Folding of the chromosomal fibre in interphase nuclei is an important element in the regulation of g...
The spatial organization of chromosomes influences many nuclear processes including gene expression....
<div><p>Folding of the chromosomal fibre in interphase nuclei is an important element in the regulat...
Chromosome conformation capture approaches have shown that interphase chromatin is partitioned into ...
Imaging and chromosome conformation capture studies have revealed several layers of chromosome organ...
Inside of the nucleus, chromosomes are intricately folded to regulate expression of their genes. Ear...
Mammalian chromatin is spatially organized at many scales showing two prominent features in interpha...
The human genome folds to create thousands of intervals, called “contact domains,” that exhibit enha...
Cohesin plays vital roles in chromatin folding and gene expression regulation, cooperating with such...
The organisation of mammalian genomes into loops and topologically associating domains (TADs) contri...
Cohesin plays vital roles in chromatin folding and gene expression regulation, cooperating with such...
Super-resolution microscopy identifies sub-topologically associating domain (TAD) nanodomains and in...
Mammalian genomes are spatially organized into compartments, topologically associating domains (TADs...
Whereas folding of genomes at the large scale of epigenomic compartments and topologically associati...
Proximity ligation assays such as circularized chromosome conformation capture and high-throughput c...
Folding of the chromosomal fibre in interphase nuclei is an important element in the regulation of g...
The spatial organization of chromosomes influences many nuclear processes including gene expression....
<div><p>Folding of the chromosomal fibre in interphase nuclei is an important element in the regulat...
Chromosome conformation capture approaches have shown that interphase chromatin is partitioned into ...