Understanding how regulatory sequences interact in the context of chromosomal architecture is a central challenge in biology. Chromosome conformation capture revealed that mammalian chromosomes possess a rich hierarchy of structural layers, from multi-megabase compartments to sub-megabase topologically associating domains (TADs) and sub-TAD contact domains. TADs appear to act as regulatory microenvironments by constraining and segregating regulatory interactions across discrete chromosomal regions. However, it is unclear whether other (or all) folding layers share similar properties, or rather TADs constitute a privileged folding scale with maximal impact on the organization of regulatory interactions. Here, we present a novel algorithm nam...
Chromatin folding gives rise to structural elements among which are clusters of densely interacting ...
The 3D organization of chromatin within the nucleus is crucial for genome functionality. This is tru...
The last decade has radically renewed our understanding of higher order chromatin folding in the euk...
Understanding how regulatory sequences interact in the context of chromosomal architecture is a cent...
Understanding how regulatory sequences interact in the context of chromosomal architecture is a cent...
Understanding how regulatory sequences interact in the context of chromosomal architecture is a cent...
Mammalian chromosomes fold into arrays of megabase‐sized topologically associating domains (TADs), w...
Chromosome conformation capture (3C)-based techniques such as chromosome conformation capture carbon...
Mammalian chromosomes fold into arrays of megabase‐sized topologically associating domains (TADs), w...
Mammalian chromosomes fold into arrays of megabase‐sized topologically associating domains (TADs), w...
SummaryA new level of chromosome organization, topologically associating domains (TADs), was recentl...
All of the features and functions of a cell are defined by the linear sequence of nucleotides in its...
Chromatin folding gives rise to structural elements among which are clusters of densely interacting ...
Vertebrate genomes organize into topologically associating domains (TADs), delimited by boundaries t...
The spatial organization of the genome is intimately linked to its biological function, yet our unde...
Chromatin folding gives rise to structural elements among which are clusters of densely interacting ...
The 3D organization of chromatin within the nucleus is crucial for genome functionality. This is tru...
The last decade has radically renewed our understanding of higher order chromatin folding in the euk...
Understanding how regulatory sequences interact in the context of chromosomal architecture is a cent...
Understanding how regulatory sequences interact in the context of chromosomal architecture is a cent...
Understanding how regulatory sequences interact in the context of chromosomal architecture is a cent...
Mammalian chromosomes fold into arrays of megabase‐sized topologically associating domains (TADs), w...
Chromosome conformation capture (3C)-based techniques such as chromosome conformation capture carbon...
Mammalian chromosomes fold into arrays of megabase‐sized topologically associating domains (TADs), w...
Mammalian chromosomes fold into arrays of megabase‐sized topologically associating domains (TADs), w...
SummaryA new level of chromosome organization, topologically associating domains (TADs), was recentl...
All of the features and functions of a cell are defined by the linear sequence of nucleotides in its...
Chromatin folding gives rise to structural elements among which are clusters of densely interacting ...
Vertebrate genomes organize into topologically associating domains (TADs), delimited by boundaries t...
The spatial organization of the genome is intimately linked to its biological function, yet our unde...
Chromatin folding gives rise to structural elements among which are clusters of densely interacting ...
The 3D organization of chromatin within the nucleus is crucial for genome functionality. This is tru...
The last decade has radically renewed our understanding of higher order chromatin folding in the euk...