In higher eukaryotes, chromosomes have a complex three-dimensional (3D) conformation in the cell nucleus serving vital functional purposes, yet their folding principles remain poorly understood at the single-molecule level. Here, we summarize recent approaches from polymer physics to comprehend the physical mechanisms underlying chromatin architecture. In particular, we focus on two models that have been supported by recent, growing experimental evidence, the Loop Extrusion model and the Strings&Binders phase separation model. We discuss their key ingredients, how they compare to experimental data and some insight they provide on chromatin architecture and gene regulation. Progresses in that research field are opening the possibility to pre...
There is rapidly growing evidence that folding of the chromatin fibre inside the interphase nucleus ...
Microscopy and sequencing-based technologies are providing increasing insights into chromatin archit...
Microscopy and sequencing-based technologies are providing increasing insights into chromatin archit...
In higher eukaryotes, chromosomes have a complex three-dimensional (3D) conformation in the cell nuc...
In higher eukaryotes, chromosomes have a complex three-dimensional (3D) conformation in the cell nuc...
In the cell nucleus, chromosomes have a complex spatial organization, spanning several length scales...
In mammalian cell nuclei, chromatin has a spatial organization that is strictly related to cellular ...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Recent super-resolution imaging technologies enable tracing chromatin conformation with nanometer-sc...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
This PhD thesis concerns the application of polymer physics to investigate the mechanisms underlying...
The spatial organization of the chromatin in the nucleus is known to play an important role in trans...
Loop-extrusion and phase-separation have been proposed as mechanisms that shape chromosome spatial o...
Advances in microscopy and genomic techniques have provided new insight into spatial chromatin organ...
There is rapidly growing evidence that folding of the chromatin fibre inside the interphase nucleus ...
Microscopy and sequencing-based technologies are providing increasing insights into chromatin archit...
Microscopy and sequencing-based technologies are providing increasing insights into chromatin archit...
In higher eukaryotes, chromosomes have a complex three-dimensional (3D) conformation in the cell nuc...
In higher eukaryotes, chromosomes have a complex three-dimensional (3D) conformation in the cell nuc...
In the cell nucleus, chromosomes have a complex spatial organization, spanning several length scales...
In mammalian cell nuclei, chromatin has a spatial organization that is strictly related to cellular ...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Recent super-resolution imaging technologies enable tracing chromatin conformation with nanometer-sc...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
This PhD thesis concerns the application of polymer physics to investigate the mechanisms underlying...
The spatial organization of the chromatin in the nucleus is known to play an important role in trans...
Loop-extrusion and phase-separation have been proposed as mechanisms that shape chromosome spatial o...
Advances in microscopy and genomic techniques have provided new insight into spatial chromatin organ...
There is rapidly growing evidence that folding of the chromatin fibre inside the interphase nucleus ...
Microscopy and sequencing-based technologies are providing increasing insights into chromatin archit...
Microscopy and sequencing-based technologies are providing increasing insights into chromatin archit...