© 2020, © 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. Mammalian genome structure is closely linked to function. At the scale of kilobases to megabases, CTCF and cohesin organize the genome into chromatin loops. Mechanistically, cohesin is proposed to extrude chromatin loops bidirectionally until it encounters occupied CTCF DNA-binding sites. Curiously, loops form predominantly between CTCF binding sites in a convergent orientation. How CTCF interacts with and blocks cohesin extrusion in an orientation-specific manner has remained a mechanistic mystery. Here, we review recent papers that have shed light on these processes and suggest a multi-step interaction between CTCF and cohesin. This interac...
© 2020, The Author(s). Current models propose that boundaries of mammalian topologically associating...
Current models propose that boundaries of mammalian topologically associating domains (TADs) arise f...
Current models propose that boundaries of mammalian topologically associating domains (TADs) arise f...
Mammalian genome structure is closely linked to function. At the scale of kilobases to megabases, CT...
Folding of mammalian genomes into spatial domains is critical for gene regulation. The insulator pro...
Folding of mammalian genomes into spatial domains is critical for gene regulation. The insulator pro...
Cohesin-mediated loop extrusion folds interphase chromosomes at the ten to hundreds kilobases scale....
Cohesin catalyses the folding of the genome into loops that are anchored by CTCF1. The molecular mec...
Cohesin catalyses the folding of the genome into loops that are anchored by CTCF1. The molecular mec...
Mammalian genomes are folded into topologically associating domains (TADs), consisting of chromatin ...
Folding of the chromosomal fibre in interphase nuclei is an important element in the regulation of g...
<div><p>Folding of the chromosomal fibre in interphase nuclei is an important element in the regulat...
The ring-like cohesin complex mediates sister chromatid cohesion by encircling pairs of sister chrom...
Mammalian genomes are spatially organized into compartments, topologically associating domains (TADs...
Complex genomes show intricate organization in three-dimensional (3D) nuclear space. Current models ...
© 2020, The Author(s). Current models propose that boundaries of mammalian topologically associating...
Current models propose that boundaries of mammalian topologically associating domains (TADs) arise f...
Current models propose that boundaries of mammalian topologically associating domains (TADs) arise f...
Mammalian genome structure is closely linked to function. At the scale of kilobases to megabases, CT...
Folding of mammalian genomes into spatial domains is critical for gene regulation. The insulator pro...
Folding of mammalian genomes into spatial domains is critical for gene regulation. The insulator pro...
Cohesin-mediated loop extrusion folds interphase chromosomes at the ten to hundreds kilobases scale....
Cohesin catalyses the folding of the genome into loops that are anchored by CTCF1. The molecular mec...
Cohesin catalyses the folding of the genome into loops that are anchored by CTCF1. The molecular mec...
Mammalian genomes are folded into topologically associating domains (TADs), consisting of chromatin ...
Folding of the chromosomal fibre in interphase nuclei is an important element in the regulation of g...
<div><p>Folding of the chromosomal fibre in interphase nuclei is an important element in the regulat...
The ring-like cohesin complex mediates sister chromatid cohesion by encircling pairs of sister chrom...
Mammalian genomes are spatially organized into compartments, topologically associating domains (TADs...
Complex genomes show intricate organization in three-dimensional (3D) nuclear space. Current models ...
© 2020, The Author(s). Current models propose that boundaries of mammalian topologically associating...
Current models propose that boundaries of mammalian topologically associating domains (TADs) arise f...
Current models propose that boundaries of mammalian topologically associating domains (TADs) arise f...