Precise control of mammalian gene expression is facilitated through epigenetic mechanisms and nuclear organization. In particular, insulated chromosome structures are important for regulatory control, but the phenotypic consequences of their boundary disruption on developmental processes are complex and remain insufficiently understood. Here, we generated deeply sequenced Hi-C data for human pluripotent stem cells (hPSCs) that allowed us to identify CTCF loop domains that have highly conserved boundary CTCF sites and show a notable enrichment of individual developmental regulators. Importantly, perturbation of such a boundary in hPSCs interfered with proper differentiation through deregulated distal enhancer-promoter activity. Finally, we f...
The nuclear organization of chromosomes has been suggested to be associated with regulation of gene ...
The genome is organized into repeating topologically associated domains (TADs), each of which is spa...
Abstract Embryonic development involves massive proliferation and differentiation of cell lineages. ...
In this study, we describe the 3D chromosome regulatory landscape of human naive and primed embryoni...
The genome of pluripotent stem cells adopts a unique three-dimensional architecture featuring weakly...
SummaryThe pluripotent state of embryonic stem cells (ESCs) is produced by active transcription of g...
The pluripotent state of embryonic stem cells (ESCs) is produced by active transcription of genes th...
Vertebrate genomes organize into topologically associating domains, delimited by boundaries that ins...
It is now well established that genome organization plays a major role in its functioning. Enhancers...
Higher-order chromatin structure is emerging as an important regulator of gene expression. Although ...
The phenotypic consequence of 3D genome boundary disruption on developmental processes remains insuf...
The molecular mechanisms underlying folding of mammalian chromosomes remain poorly understood. The t...
Metazoan chromosomes are organized into discrete spatial domains (TADs), believed to contribute to t...
Metazoan chromosomes are organized into discrete spatial domains (TADs), believed to contribute to t...
Understanding how regulatory sequences interact in the context of chromosomal architecture is a cent...
The nuclear organization of chromosomes has been suggested to be associated with regulation of gene ...
The genome is organized into repeating topologically associated domains (TADs), each of which is spa...
Abstract Embryonic development involves massive proliferation and differentiation of cell lineages. ...
In this study, we describe the 3D chromosome regulatory landscape of human naive and primed embryoni...
The genome of pluripotent stem cells adopts a unique three-dimensional architecture featuring weakly...
SummaryThe pluripotent state of embryonic stem cells (ESCs) is produced by active transcription of g...
The pluripotent state of embryonic stem cells (ESCs) is produced by active transcription of genes th...
Vertebrate genomes organize into topologically associating domains, delimited by boundaries that ins...
It is now well established that genome organization plays a major role in its functioning. Enhancers...
Higher-order chromatin structure is emerging as an important regulator of gene expression. Although ...
The phenotypic consequence of 3D genome boundary disruption on developmental processes remains insuf...
The molecular mechanisms underlying folding of mammalian chromosomes remain poorly understood. The t...
Metazoan chromosomes are organized into discrete spatial domains (TADs), believed to contribute to t...
Metazoan chromosomes are organized into discrete spatial domains (TADs), believed to contribute to t...
Understanding how regulatory sequences interact in the context of chromosomal architecture is a cent...
The nuclear organization of chromosomes has been suggested to be associated with regulation of gene ...
The genome is organized into repeating topologically associated domains (TADs), each of which is spa...
Abstract Embryonic development involves massive proliferation and differentiation of cell lineages. ...