We investigate chromosome organization within the nucleus using polymer models whose formulation is closely guided by experiments in live yeast cells. We employ bead-spring chromosome models together with loop formation within the chains and the presence of nuclear bodies to quantify the extent to which these mechanisms shape the topological landscape in the interphase nucleus. By investigating the genome as a dynamical system, we show that domains of high chromosomal interactions can arise solely from the polymeric nature of the chromosome arms due to entropic interactions and nuclear confinement. In this view, the role of bio-chemical related processes is to modulate and extend the duration of the interacting domains
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Chromatin is known to be organized into multiple domains of varying sizes and compaction. While thes...
SummaryBackgroundDespite the absence of internal membranes, the nucleus of eukaryotic cells is spati...
We investigate chromosome organization within the nucleus using polymer models whose formulation is ...
Clear organizational patterns on the genome have emerged from the statistics of population studies o...
The genome in living yeast cells is a highly dynamic system where entropic interactions and nuclear ...
The architecture of the eukaryotic genome is characterized by a high degree of spatial organization....
During interphase chromosomes decondense, but fluorescent in situ hybridization experiments reveal t...
The revolution in understanding higher order chromosome dynamics and organization derives from treat...
International audienceBiological functions including gene expression and dna repair are affected by ...
Nuclear organization can impact on all aspects of the genome life cycle. This organization is thorou...
Advances in microscopy and genomic techniques have provided new insight into spatial chromatin organ...
In the cell nucleus, chromosomes have a complex spatial organization, spanning several length scales...
AbstractThe manner by which eukaryotic genomes are packaged into nuclei while maintaining crucial nu...
Regions of highly repetitive DNA, such as those found in the nucleolus, show a self-organization tha...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Chromatin is known to be organized into multiple domains of varying sizes and compaction. While thes...
SummaryBackgroundDespite the absence of internal membranes, the nucleus of eukaryotic cells is spati...
We investigate chromosome organization within the nucleus using polymer models whose formulation is ...
Clear organizational patterns on the genome have emerged from the statistics of population studies o...
The genome in living yeast cells is a highly dynamic system where entropic interactions and nuclear ...
The architecture of the eukaryotic genome is characterized by a high degree of spatial organization....
During interphase chromosomes decondense, but fluorescent in situ hybridization experiments reveal t...
The revolution in understanding higher order chromosome dynamics and organization derives from treat...
International audienceBiological functions including gene expression and dna repair are affected by ...
Nuclear organization can impact on all aspects of the genome life cycle. This organization is thorou...
Advances in microscopy and genomic techniques have provided new insight into spatial chromatin organ...
In the cell nucleus, chromosomes have a complex spatial organization, spanning several length scales...
AbstractThe manner by which eukaryotic genomes are packaged into nuclei while maintaining crucial nu...
Regions of highly repetitive DNA, such as those found in the nucleolus, show a self-organization tha...
Chromosomes have a complex architecture in the cell nucleus, which serves vital functional purposes,...
Chromatin is known to be organized into multiple domains of varying sizes and compaction. While thes...
SummaryBackgroundDespite the absence of internal membranes, the nucleus of eukaryotic cells is spati...