Three-dimensional genome structure plays an important role in gene regulation. Globally, chromosomes are organized into active and inactive compartments while, at the gene level, looping interactions connect promoters to regulatory elements. Topologically associating domains (TADs), typically several hundred kilobases in size, form an intermediate level of organization. Major questions include how TADs are formed and how they are related to looping interactions between genes and regulatory elements. Here we performed a focused 5C analysis of a 2.8 Mb chromosome 7 region surrounding CFTR in a panel of cell types. We find that the same TAD boundaries are present in all cell types, indicating that TADs represent a universal chromosome architec...
International audienceThe tridimensional (3D) organization of mammalian genomes combines structures ...
Author summary During development, enhancer sequences tightly regulate the spatio-temporal expressio...
SummaryA new level of chromosome organization, topologically associating domains (TADs), was recentl...
Three-dimensional genome structure plays an important role in gene regulation. Globally, chromosomes...
Abstract Background Mechanisms underlying genome 3D organization and domain formation in the mammali...
The organization and folding of chromatin within the nucleus can determine the outcome of gene expre...
Developmental enhancers are essential regulatory elements that drive precise spatio-temporal gene ex...
International audienceMammalian chromosomes are organized at different length scales within the cell...
Spatial organization is an inherent property of the vertebrate genome to accommodate the roughly 2m ...
Spatial organization is an inherent property of the vertebrate genome to accommodate the roughly 2m ...
We discuss here a series of testable hypotheses concerning the role of chromosome folding into topol...
Understanding how regulatory sequences interact in the context of chromosomal architecture is a cent...
Three-dimensional spatial organization of chromosomes is defined by highly self-interacting regions ...
The tridimensional (3D) organization of mammalian genomes combines structures from different length ...
Regulation of gene expression is a complex process that requires the action of DNA elements such as ...
International audienceThe tridimensional (3D) organization of mammalian genomes combines structures ...
Author summary During development, enhancer sequences tightly regulate the spatio-temporal expressio...
SummaryA new level of chromosome organization, topologically associating domains (TADs), was recentl...
Three-dimensional genome structure plays an important role in gene regulation. Globally, chromosomes...
Abstract Background Mechanisms underlying genome 3D organization and domain formation in the mammali...
The organization and folding of chromatin within the nucleus can determine the outcome of gene expre...
Developmental enhancers are essential regulatory elements that drive precise spatio-temporal gene ex...
International audienceMammalian chromosomes are organized at different length scales within the cell...
Spatial organization is an inherent property of the vertebrate genome to accommodate the roughly 2m ...
Spatial organization is an inherent property of the vertebrate genome to accommodate the roughly 2m ...
We discuss here a series of testable hypotheses concerning the role of chromosome folding into topol...
Understanding how regulatory sequences interact in the context of chromosomal architecture is a cent...
Three-dimensional spatial organization of chromosomes is defined by highly self-interacting regions ...
The tridimensional (3D) organization of mammalian genomes combines structures from different length ...
Regulation of gene expression is a complex process that requires the action of DNA elements such as ...
International audienceThe tridimensional (3D) organization of mammalian genomes combines structures ...
Author summary During development, enhancer sequences tightly regulate the spatio-temporal expressio...
SummaryA new level of chromosome organization, topologically associating domains (TADs), was recentl...