Although our knowledge of chromatin organization has advanced significantly in recent years, much about the relationships between different features of genome architecture is still unknown. Folding of mammalian genomes into spatial domains is thought to depend on architectural proteins, other DNA-binding proteins, and different forms of RNA. In addition, emerging evidence points towards the possibility that the three-dimensional organisation of the genome is controlled by DNA topology. In this scenario, cohesin, CCCTC-binding factor (CTCF), transcription, DNA supercoiling, and topoisomerases are integrated to dictate different layers of genome organization, and the contribution of all four to gene control is an important direction of future...
Cohesin plays vital roles in chromatin folding and gene expression regulation, cooperating with such...
Cohesin plays vital roles in chromatin folding and gene expression regulation, cooperating with such...
Understanding the topological configurations of chromatin may reveal valuable insights into how the ...
Although our knowledge of chromatin organization has advanced significantly in recent years, much ab...
A detailed understanding of higher order chromatin structure is critical to understand the mechanism...
Proximity ligation assays such as circularized chromosome conformation capture and high-throughput c...
Hierarchical levels of chromatin organization allow different genomic functions to be spatio-tempora...
It is becoming increasingly clear that eukaryotic genomes are subjected to higher-order chromatin or...
The organisation of mammalian genomes into loops and topologically associating domains (TADs) contri...
Nuclear organization is an important factor that can be a contributing factor to the function of the...
Mammalian genome structure is closely linked to function. At the scale of kilobases to megabases, CT...
The chromatin fiber folds into loops, but the mechanisms controlling loop extrusion are still poorly...
The spatial organization of chromosomes influences many nuclear processes including gene expression....
Background: A complex interplay between chromatin and topological machineries is critical for genome...
Spatial genome organization and its effect on transcription remains a fundamental question. We appli...
Cohesin plays vital roles in chromatin folding and gene expression regulation, cooperating with such...
Cohesin plays vital roles in chromatin folding and gene expression regulation, cooperating with such...
Understanding the topological configurations of chromatin may reveal valuable insights into how the ...
Although our knowledge of chromatin organization has advanced significantly in recent years, much ab...
A detailed understanding of higher order chromatin structure is critical to understand the mechanism...
Proximity ligation assays such as circularized chromosome conformation capture and high-throughput c...
Hierarchical levels of chromatin organization allow different genomic functions to be spatio-tempora...
It is becoming increasingly clear that eukaryotic genomes are subjected to higher-order chromatin or...
The organisation of mammalian genomes into loops and topologically associating domains (TADs) contri...
Nuclear organization is an important factor that can be a contributing factor to the function of the...
Mammalian genome structure is closely linked to function. At the scale of kilobases to megabases, CT...
The chromatin fiber folds into loops, but the mechanisms controlling loop extrusion are still poorly...
The spatial organization of chromosomes influences many nuclear processes including gene expression....
Background: A complex interplay between chromatin and topological machineries is critical for genome...
Spatial genome organization and its effect on transcription remains a fundamental question. We appli...
Cohesin plays vital roles in chromatin folding and gene expression regulation, cooperating with such...
Cohesin plays vital roles in chromatin folding and gene expression regulation, cooperating with such...
Understanding the topological configurations of chromatin may reveal valuable insights into how the ...