Within cell nuclei, several biophysical processes occur in order to allow the correct activities of the genome such as transcription and gene regulation. To quantitatively investigate such processes, polymer physics models have been developed to unveil the molecular mechanisms underlying genome functions. Among these, phase-separation plays a key role since it controls gene activity and shapes chromatin spatial structure. In this paper, we review some recent experimental and theoretical progress in the field and show that polymer physics in synergy with numerical simulations can be helpful for several purposes, including the study of molecular condensates, gene-enhancer dynamics, and the three-dimensional reconstruction of real genomic regi...
In eukaryotes, chromosomes reside in the crowded environment of the cell nucleus. Understanding the ...
There is rapidly growing evidence that folding of the chromatin fibre inside the interphase nucleus ...
Advances in microscopy and genomic techniques have provided new insight into spatial chromatin organ...
Within cell nuclei, several biophysical processes occur in order to allow the correct activities of ...
Recent super-resolution imaging technologies enable tracing chromatin conformation with nanometer-sc...
In higher eukaryotes, chromosomes have a complex three-dimensional (3D) conformation in the cell nuc...
Understanding the mechanisms that control the organization of chromosomes in the space of the nucleu...
This PhD thesis concerns the application of polymer physics to investigate the mechanisms underlying...
The molecular and physical mechanisms underlying chromatin folding at the single DNA molecule level ...
In mammalian cell nuclei, chromatin has a spatial organization that is strictly related to cellular ...
Loop-extrusion and phase-separation have been proposed as mechanisms that shape chromosome spatial o...
<span style='font-size:9.0pt;font-family:Helvetica; mso-fareast-font-family:"Times New Roman";mso-bi...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Polymer models have long been used to study the properties and behaviour of DNA, however the princip...
The spatial organization of the chromatin in the nucleus is known to play an important role in trans...
In eukaryotes, chromosomes reside in the crowded environment of the cell nucleus. Understanding the ...
There is rapidly growing evidence that folding of the chromatin fibre inside the interphase nucleus ...
Advances in microscopy and genomic techniques have provided new insight into spatial chromatin organ...
Within cell nuclei, several biophysical processes occur in order to allow the correct activities of ...
Recent super-resolution imaging technologies enable tracing chromatin conformation with nanometer-sc...
In higher eukaryotes, chromosomes have a complex three-dimensional (3D) conformation in the cell nuc...
Understanding the mechanisms that control the organization of chromosomes in the space of the nucleu...
This PhD thesis concerns the application of polymer physics to investigate the mechanisms underlying...
The molecular and physical mechanisms underlying chromatin folding at the single DNA molecule level ...
In mammalian cell nuclei, chromatin has a spatial organization that is strictly related to cellular ...
Loop-extrusion and phase-separation have been proposed as mechanisms that shape chromosome spatial o...
<span style='font-size:9.0pt;font-family:Helvetica; mso-fareast-font-family:"Times New Roman";mso-bi...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Polymer models have long been used to study the properties and behaviour of DNA, however the princip...
The spatial organization of the chromatin in the nucleus is known to play an important role in trans...
In eukaryotes, chromosomes reside in the crowded environment of the cell nucleus. Understanding the ...
There is rapidly growing evidence that folding of the chromatin fibre inside the interphase nucleus ...
Advances in microscopy and genomic techniques have provided new insight into spatial chromatin organ...