The genome is organized via CTCF-cohesin-binding sites, which partition chromosomes into 1-5 megabase (Mb) topologically associated domains (TADs), and further into smaller sub-domains (sub-TADs). Here we examined in vivo an ∼80 kb sub-TAD, containing the mouse α-globin gene cluster, lying within a ∼1 Mb TAD. We find that the sub-TAD is flanked by predominantly convergent CTCF-cohesin sites that are ubiquitously bound by CTCF but only interact during erythropoiesis, defining a self-interacting erythroid compartment. Whereas the α-globin regulatory elements normally act solely on promoters downstream of the enhancers, removal of a conserved upstream CTCF-cohesin boundary extends the sub-TAD to adjacent upstream CTCF-cohesin-binding sites. Th...
Cohesin-mediated sister chromatid cohesion is essential for chromosome segregation and post-replicat...
BACKGROUND: CTCF is a key insulator-binding protein, and mammalian genomes contain numerous CTCF sit...
The CCCTC-binding factor (CTCF) works together with the cohesin complex to drive the formation of ch...
The genome is organized via CTCF-cohesin-binding sites, which partition chromosomes into 1-5 megabas...
The genome is organized via CTCF–cohesin-binding sites, which partition chromosomes into 1–5 megabas...
Distal enhancer elements regulate the tissue-specific expression of their target genes via the estab...
Self-interacting chromatin domains encompass genes and their cis-regulatory elements; however, the t...
The cohesin complex holds together sister chromatids after DNA replication: this is vital for correc...
The β-globin locus undergoes dynamic chromatin interaction changes in differentiating erythroid cell...
In addition to mediating sister chromatid cohesion during the cell cycle, the cohesin complex associ...
Chromosome conformation capture approaches have shown that interphase chromatin is partitioned into ...
Enhancers and promoters predominantly interact within large-scale topologically associating domains ...
SummaryCohesins mediate sister chromatid cohesion, which is essential for chromosome segregation and...
BACKGROUND:CTCF and cohesinSA-1 are regulatory proteins involved in a number of critical cellular pr...
CTCF (CCCTC-binding factor) binds sites around the mouse β-globin locus that spatially cluster in th...
Cohesin-mediated sister chromatid cohesion is essential for chromosome segregation and post-replicat...
BACKGROUND: CTCF is a key insulator-binding protein, and mammalian genomes contain numerous CTCF sit...
The CCCTC-binding factor (CTCF) works together with the cohesin complex to drive the formation of ch...
The genome is organized via CTCF-cohesin-binding sites, which partition chromosomes into 1-5 megabas...
The genome is organized via CTCF–cohesin-binding sites, which partition chromosomes into 1–5 megabas...
Distal enhancer elements regulate the tissue-specific expression of their target genes via the estab...
Self-interacting chromatin domains encompass genes and their cis-regulatory elements; however, the t...
The cohesin complex holds together sister chromatids after DNA replication: this is vital for correc...
The β-globin locus undergoes dynamic chromatin interaction changes in differentiating erythroid cell...
In addition to mediating sister chromatid cohesion during the cell cycle, the cohesin complex associ...
Chromosome conformation capture approaches have shown that interphase chromatin is partitioned into ...
Enhancers and promoters predominantly interact within large-scale topologically associating domains ...
SummaryCohesins mediate sister chromatid cohesion, which is essential for chromosome segregation and...
BACKGROUND:CTCF and cohesinSA-1 are regulatory proteins involved in a number of critical cellular pr...
CTCF (CCCTC-binding factor) binds sites around the mouse β-globin locus that spatially cluster in th...
Cohesin-mediated sister chromatid cohesion is essential for chromosome segregation and post-replicat...
BACKGROUND: CTCF is a key insulator-binding protein, and mammalian genomes contain numerous CTCF sit...
The CCCTC-binding factor (CTCF) works together with the cohesin complex to drive the formation of ch...