Mammalian genomes are spatially organized into compartments, topologically associating domains (TADs), and loops to facilitate gene regulation and other chromosomal functions. How compartments, TADs, and loops are generated is unknown. It has been proposed that cohesin forms TADs and loops by extruding chromatin loops until it encounters CTCF, but direct evidence for this hypothesis is missing. Here, we show that cohesin suppresses compartments but is required for TADs and loops, that CTCF defines their boundaries, and that the cohesin unloading factor WAPL and its PDS5 binding partners control the length of loops. In the absence of WAPL and PDS5 proteins, cohesin forms extended loops, presumably by passing CTCF sites, accumulates in axial ...
The human genome folds to create thousands of intervals, called “contact domains,” that exhibit enha...
The organization of chromatin into higher order structures is essential for chromosome segregation, ...
Folding of mammalian genomes into spatial domains is critical for gene regulation. The insulator pro...
The spatial organization of chromosomes influences many nuclear processes including gene expression....
The spatial organization of chromosomes influences many nuclear processes including gene expression....
International audienceThe spatial organization of chromosomes influences many nuclear processes incl...
Inside of the nucleus, chromosomes are intricately folded to regulate expression of their genes. Ear...
Mammalian genomes are folded into spatial domains, which regulate gene expression by modulating enha...
Mammalian genomes are folded into spatial domains, which regulate gene expression by modulating enha...
The ring-like cohesin complex mediates sister chromatid cohesion by encircling pairs of sister chrom...
Abstract Cohesin is a key organizer of chromatin folding in eukaryotic cells. The two main activitie...
Mammalian genome structure is closely linked to function. At the scale of kilobases to megabases, CT...
© 2020, © 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. ...
Folding of mammalian genomes into spatial domains is critical for gene regulation. The insulator pro...
The organization of chromatin into higher order structures is essential for chromosome segregation, ...
The human genome folds to create thousands of intervals, called “contact domains,” that exhibit enha...
The organization of chromatin into higher order structures is essential for chromosome segregation, ...
Folding of mammalian genomes into spatial domains is critical for gene regulation. The insulator pro...
The spatial organization of chromosomes influences many nuclear processes including gene expression....
The spatial organization of chromosomes influences many nuclear processes including gene expression....
International audienceThe spatial organization of chromosomes influences many nuclear processes incl...
Inside of the nucleus, chromosomes are intricately folded to regulate expression of their genes. Ear...
Mammalian genomes are folded into spatial domains, which regulate gene expression by modulating enha...
Mammalian genomes are folded into spatial domains, which regulate gene expression by modulating enha...
The ring-like cohesin complex mediates sister chromatid cohesion by encircling pairs of sister chrom...
Abstract Cohesin is a key organizer of chromatin folding in eukaryotic cells. The two main activitie...
Mammalian genome structure is closely linked to function. At the scale of kilobases to megabases, CT...
© 2020, © 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. ...
Folding of mammalian genomes into spatial domains is critical for gene regulation. The insulator pro...
The organization of chromatin into higher order structures is essential for chromosome segregation, ...
The human genome folds to create thousands of intervals, called “contact domains,” that exhibit enha...
The organization of chromatin into higher order structures is essential for chromosome segregation, ...
Folding of mammalian genomes into spatial domains is critical for gene regulation. The insulator pro...