Understanding the topological configurations of chromatin may reveal valuable insights into how the genome and epigenome act in concert to control cell fate during development. Here, we generate high-resolution architecture maps across seven genomic loci in embryonic stem cells and neural progenitor cells. We observe a hierarchy of 3D interactions that undergo marked reorganization at the submegabase scale during differentiation. Distinct combinations of CCCTC-binding factor (CTCF), Mediator, and cohesin show widespread enrichment in chromatin interactions at different length scales. CTCF/cohesin anchor long-range constitutive interactions that might form the topological basis for invariant subdomains. Conversely, Mediator/cohesin bridge sh...
It is now well established that genome organization plays a major role in its functioning. Enhancers...
The spatial organization of the genome is intimately linked to its biological function, yet our unde...
The spatial organization of the genome is linked to its biological function. However, the relationsh...
SummaryUnderstanding the topological configurations of chromatin may reveal valuable insights into h...
A detailed understanding of higher order chromatin structure is critical to understand the mechanism...
The genome of pluripotent stem cells adopts a unique three-dimensional architecture featuring weakly...
Spatial genome organization and its effect on transcription remains a fundamental question. We appli...
The relationship between 3D organization of the genome and gene-regulatory networks is poorly unders...
The relationship between 3D organization of the genome and gene-regulatory networks is poorly unders...
Although our knowledge of chromatin organization has advanced significantly in recent years, much ab...
Cohesin and CTCF are master regulators of genome topology. How these ubiquitous proteins contribute ...
Proximity ligation assays such as circularized chromosome conformation capture and high-throughput c...
Cohesin and CTCF are master regulators of genome topology. How these ubiquitous proteins contribute ...
Super-resolution microscopy identifies sub-topologically associating domain (TAD) nanodomains and in...
It is becoming increasingly clear that the shape of the genome importantly influences transcription ...
It is now well established that genome organization plays a major role in its functioning. Enhancers...
The spatial organization of the genome is intimately linked to its biological function, yet our unde...
The spatial organization of the genome is linked to its biological function. However, the relationsh...
SummaryUnderstanding the topological configurations of chromatin may reveal valuable insights into h...
A detailed understanding of higher order chromatin structure is critical to understand the mechanism...
The genome of pluripotent stem cells adopts a unique three-dimensional architecture featuring weakly...
Spatial genome organization and its effect on transcription remains a fundamental question. We appli...
The relationship between 3D organization of the genome and gene-regulatory networks is poorly unders...
The relationship between 3D organization of the genome and gene-regulatory networks is poorly unders...
Although our knowledge of chromatin organization has advanced significantly in recent years, much ab...
Cohesin and CTCF are master regulators of genome topology. How these ubiquitous proteins contribute ...
Proximity ligation assays such as circularized chromosome conformation capture and high-throughput c...
Cohesin and CTCF are master regulators of genome topology. How these ubiquitous proteins contribute ...
Super-resolution microscopy identifies sub-topologically associating domain (TAD) nanodomains and in...
It is becoming increasingly clear that the shape of the genome importantly influences transcription ...
It is now well established that genome organization plays a major role in its functioning. Enhancers...
The spatial organization of the genome is intimately linked to its biological function, yet our unde...
The spatial organization of the genome is linked to its biological function. However, the relationsh...